bim技術論文范文

時(shi)間:2023-03-23 19:39:18

導語:如(ru)何才能寫好一(yi)篇bim技(ji)術論文(wen),這就需要搜集(ji)整理更多的資料和文(wen)獻,歡迎閱讀(du)由公務員之(zhi)家整理的十篇范文(wen),供你借鑒。

bim技術論文

篇1

城建檔案是在城市規劃、建設、管理活動中形成的具有保存價值的文字、圖紙、圖表、聲像、電子文件、實物等各種形式和載體的歷史記錄。它是城市規劃、建設、管理過程的真實記錄,是城市建設和發展的重要依據。它對城市的規劃具有重要指導作用,是城市的工業和民用建筑、市政基礎設施的新建、改建、維護和恢復重建的重要依據。城建檔案館(室)是管理城建檔案的機構和場所。主要從事城建檔案的收集、整理、鑒定、保管、編研和利用工作。城建檔案管理的主要作用與目的就是保護和利用城市規劃、建設、管理活動中形成珍貴資料,為城市的建設、發展提供更好的利用。過去城建檔案管理工作主要針對實物檔案進行管理,整個過程從收集、整理、鑒定到保管、利用,其工作內容繁雜、勞動強度大、查尋利用效率低。近幾年許多城建檔案機構根據《全國城建檔案信息化建設規劃與實施綱要》、《數字檔案館建設指南》和《紙質檔案數字化技術規范》(DAT31-2005)的要求開展一系列城建檔案數字化、信息化工作,利用計算機技術實行檔案數字化管理。把原有的紙質檔案進行掃描、存儲,將原來的實物檔案轉化成數字信息(電子圖片文件)。這些工作減少了庫存檔案的損壞,在一定程度上延長了檔案的壽命,有利于檔案的保護。在城建檔案的收集過程中同時收集了部分數字資料(如:CAD數據文件、數碼照片、數字影像和掃描后的電子文件等),并建立了專業的數據庫,開發了相關城建檔案管理系統(MIS)。初步實現了城建檔案數字化管理,準確、快捷地向社會提供利用。向檔案數字化、信息化邁進了一步。隨著社會、經濟的發展和科技進步,許多地方提出“智慧城市”建設的設想,這不僅需要大量豐富的城市規劃、建設和管理等方面的信息,還需要有智能化的科技手段,更好地幫助人們建設和管理好城市。“智慧城市”離不開智能建筑,就是建筑的智能化。智能建筑不是從建筑物的使用開始的,而是在建造過程中和建成以后形成的智慧化、互聯化、相互協同化。bim技術是(shi)建(jian)(jian)造(zao)事(shi)業發展的(de)技(ji)(ji)(ji)術產物(wu),它是(shi)建(jian)(jian)筑全生命周期的(de)建(jian)(jian)筑信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)模型(xing),它是(shi)從(cong)設(she)計(ji)階段(duan),施工(gong)階段(duan)、運(yun)(yun)維階段(duan)的(de)信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)模型(xing)。BIM作為(wei)建(jian)(jian)設(she)項(xiang)目信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)的(de)整合平臺(系統(tong)),把來(lai)自各方面(mian)(包括:設(she)計(ji)、預/決算、招(zhao)投標、構件制造(zao)、采購、施工(gong)及工(gong)藝流程(cheng)等)匯(hui)集(ji)的(de)信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)實行集(ji)成(cheng)管理。利用(yong)(yong)BIM技(ji)(ji)(ji)術管理建(jian)(jian)造(zao)的(de)建(jian)(jian)筑,從(cong)開始(shi)就連續不斷(duan)(duan)地(di)匯(hui)集(ji)并形成(cheng)大量數據(ju)(ju)(信(xin)(xin)(xin)息(xi)(xi)(xi)(xi))。這些信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)是(shi)應(ying)用(yong)(yong)BIM技(ji)(ji)(ji)術的(de)工(gong)程(cheng)項(xiang)目建(jian)(jian)造(zao)過(guo)程(cheng)中形成(cheng)的(de),具有保存和(he)利用(yong)(yong)價值,是(shi)建(jian)(jian)筑的(de)運(yun)(yun)營(ying)和(he)維護、城(cheng)市的(de)數字化(hua)和(he)智能化(hua)管理所(suo)需(xu)要的(de)數據(ju)(ju)信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)。在(zai)工(gong)程(cheng)項(xiang)目中形成(cheng)的(de)所(suo)有應(ying)保存的(de)資料(包括信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)資料),都應(ying)移交到(dao)城(cheng)建(jian)(jian)檔(dang)(dang)案館,收(shou)(shou)集(ji)后的(de)信(xin)(xin)(xin)息(xi)(xi)(xi)(xi),經(jing)過(guo)整理向社(she)會提供服(fu)務(wu),與(yu)社(she)會共享。其中,也(ye)包括運(yun)(yun)用(yong)(yong)BIM技(ji)(ji)(ji)術管理的(de)工(gong)程(cheng)項(xiang)目中形成(cheng)的(de)所(suo)數據(ju)(ju)信(xin)(xin)(xin)息(xi)(xi)(xi)(xi),這些數據(ju)(ju)信(xin)(xin)(xin)息(xi)(xi)(xi)(xi)也(ye)屬(shu)于城(cheng)建(jian)(jian)檔(dang)(dang)案收(shou)(shou)集(ji)范(fan)疇(chou)。隨著這些數據(ju)(ju)的(de)逐步積累,城(cheng)建(jian)(jian)檔(dang)(dang)案機構也(ye)需(xu)要建(jian)(jian)立相(xiang)應(ying)的(de)BIM平臺,用(yong)(yong)于不斷(duan)(duan)地(di)收(shou)(shou)集(ji)、匯(hui)集(ji)和(he)更新的(de)相(xiang)關數據(ju)(ju)。為(wei)此,筆者認為(wei),BIM需(xu)要納入到(dao)城(cheng)建(jian)(jian)檔(dang)(dang)案管理工(gong)作中來(lai)。

二、城建檔案需要(yao)BIM實現現代化(hua)

管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)最(zui)終目(mu)(mu)(mu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)是(shi)(shi)(shi)為(wei)了(le)(le)更(geng)好的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)利(li)(li)(li)用(yong)(yong)(yong)這(zhe)些(xie)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)資源(yuan)(yuan),為(wei)我(wo)國(guo)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)城(cheng)(cheng)(cheng)(cheng)市(shi)(shi)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)和(he)(he)(he)(he)(he)(he)發(fa)(fa)(fa)展(zhan)(zhan)服務,開發(fa)(fa)(fa)利(li)(li)(li)用(yong)(yong)(yong)這(zhe)些(xie)資源(yuan)(yuan)就(jiu)是(shi)(shi)(shi)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)價值(zhi)所(suo)在(zai)(zai)(zai)。按照(zhao)國(guo)家(jia)住房和(he)(he)(he)(he)(he)(he)城(cheng)(cheng)(cheng)(cheng)鄉建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)部(bu)制(zhi)定《全國(guo)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)化建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)規劃(hua)與(yu)(yu)(yu)實(shi)(shi)施(shi)綱要(yao)(yao)(yao)》的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)要(yao)(yao)(yao)求(qiu),以(yi)數(shu)(shu)(shu)字(zi)(zi)化信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)資源(yuan)(yuan)為(wei)核心,以(yi)網(wang)絡技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)為(wei)基(ji)(ji)礎,以(yi)擴大(da)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)資源(yuan)(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)利(li)(li)(li)用(yong)(yong)(yong)為(wei)目(mu)(mu)(mu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de),以(yi)服務于城(cheng)(cheng)(cheng)(cheng)市(shi)(shi)規劃(hua)、建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)和(he)(he)(he)(he)(he)(he)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)為(wei)宗旨。適應(ying)(ying)時(shi)展(zhan)(zhan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)需要(yao)(yao)(yao),持續、健康地(di)(di)(di)實(shi)(shi)現(xian)(xian)(xian)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)現(xian)(xian)(xian)代(dai)化管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)工(gong)(gong)(gong)(gong)作(zuo)(zuo)(zuo)是(shi)(shi)(shi)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)事業發(fa)(fa)(fa)展(zhan)(zhan)目(mu)(mu)(mu)標。對(dui)于目(mu)(mu)(mu)前(qian)(qian)(qian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)字(zi)(zi)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)水平(ping),只是(shi)(shi)(shi)傳(chuan)統(tong)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)模(mo)(mo)式的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)一(yi)(yi)(yi)種(zhong)(zhong)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)升級,用(yong)(yong)(yong)計(ji)算(suan)機、多媒體、網(wang)絡等(deng)(deng)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)替代(dai)人工(gong)(gong)(gong)(gong),將(jiang)實(shi)(shi)物轉(zhuan)換成(cheng)(cheng)了(le)(le)數(shu)(shu)(shu)字(zi)(zi)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi),從檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)收集(ji)到(dao)(dao)(dao)最(zui)終的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)利(li)(li)(li)用(yong)(yong)(yong),檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)工(gong)(gong)(gong)(gong)作(zuo)(zuo)(zuo)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)內容(rong)沒有(you)(you)變化。在(zai)(zai)(zai)提(ti)(ti)供(gong)利(li)(li)(li)用(yong)(yong)(yong)方(fang)面,利(li)(li)(li)用(yong)(yong)(yong)計(ji)算(suan)機代(dai)替人工(gong)(gong)(gong)(gong)查尋、檢索,檢索途徑(jing)多種(zhong)(zhong)多樣,提(ti)(ti)高了(le)(le)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)檢索效(xiao)率,所(suo)查找(zhao)到(dao)(dao)(dao)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi),大(da)都與(yu)(yu)(yu)紙質原文(wen)件(jian)內容(rong)相(xiang)(xiang)同的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)電(dian)子(zi)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)(電(dian)子(zi)版本)。有(you)(you)許多城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)館(guan)在(zai)(zai)(zai)開發(fa)(fa)(fa)利(li)(li)(li)用(yong)(yong)(yong)工(gong)(gong)(gong)(gong)作(zuo)(zuo)(zuo)中(zhong)作(zuo)(zuo)(zuo)了(le)(le)很(hen)大(da)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)努力,如(ru)(ru):利(li)(li)(li)用(yong)(yong)(yong)CAD、GIS和(he)(he)(he)(he)(he)(he)RS等(deng)(deng)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)進(jin)(jin)(jin)行(xing)(xing)(xing)整合(he),構建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)了(le)(le)三維信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)平(ping)臺(tai)(tai)等(deng)(deng)等(deng)(deng)。使城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)在(zai)(zai)(zai)開發(fa)(fa)(fa)利(li)(li)(li)用(yong)(yong)(yong)中(zhong)有(you)(you)新(xin)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)進(jin)(jin)(jin)展(zhan)(zhan)。但是(shi)(shi)(shi)在(zai)(zai)(zai)面對(dui)未來(lai)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)發(fa)(fa)(fa)展(zhan)(zhan),現(xian)(xian)(xian)有(you)(you)這(zhe)些(xie)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)是(shi)(shi)(shi)不(bu)(bu)(bu)夠的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)。作(zuo)(zuo)(zuo)為(wei)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)者需要(yao)(yao)(yao)從更(geng)長(chang)遠的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)眼光去審視未來(lai)。去適應(ying)(ying)未來(lai)發(fa)(fa)(fa)展(zhan)(zhan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)需要(yao)(yao)(yao)?參與(yu)(yu)(yu)并融(rong)入到(dao)(dao)(dao)“智慧城(cheng)(cheng)(cheng)(cheng)市(shi)(shi)”的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)和(he)(he)(he)(he)(he)(he)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)中(zhong)去。不(bu)(bu)(bu)能(neng)(neng)(neng)把城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)館(guan)(室)作(zuo)(zuo)(zuo)為(wei)一(yi)(yi)(yi)個(ge)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)“倉庫”。盡管(guan)(guan)(guan)(guan)(guan)(guan)(guan)能(neng)(neng)(neng)方(fang)便(bian)、快捷(jie)地(di)(di)(di)查詢到(dao)(dao)(dao)各種(zhong)(zhong)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi),也不(bu)(bu)(bu)能(neng)(neng)(neng)算(suan)是(shi)(shi)(shi)現(xian)(xian)(xian)代(dai)化管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)。城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)現(xian)(xian)(xian)代(dai)化管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)機構和(he)(he)(he)(he)(he)(he)場(chang)所(suo)不(bu)(bu)(bu)能(neng)(neng)(neng)只是(shi)(shi)(shi)一(yi)(yi)(yi)個(ge)提(ti)(ti)供(gong)利(li)(li)(li)用(yong)(yong)(yong)“倉庫”,而(er)(er)(er)應(ying)(ying)該(gai)是(shi)(shi)(shi)提(ti)(ti)供(gong)利(li)(li)(li)用(yong)(yong)(yong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)“基(ji)(ji)地(di)(di)(di)”,它所(suo)提(ti)(ti)供(gong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)應(ying)(ying)該(gai)是(shi)(shi)(shi)經過(guo)(guo)(guo)(guo)開發(fa)(fa)(fa)“加工(gong)(gong)(gong)(gong)”過(guo)(guo)(guo)(guo)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi),而(er)(er)(er)不(bu)(bu)(bu)僅(jin)僅(jin)是(shi)(shi)(shi)“倉庫”中(zhong)源(yuan)(yuan)始的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)。從建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)業現(xian)(xian)(xian)有(you)(you)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)水平(ping)和(he)(he)(he)(he)(he)(he)應(ying)(ying)用(yong)(yong)(yong)實(shi)(shi)踐的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)(cheng)效(xiao)來(lai)看,BIM是(shi)(shi)(shi)一(yi)(yi)(yi)項(xiang)(xiang)較為(wei)科(ke)學而(er)(er)(er)又(you)切實(shi)(shi)可行(xing)(xing)(xing)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)先進(jin)(jin)(jin)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu),它具(ju)備(bei)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)可視化,協調,模(mo)(mo)擬(ni)(ni),優化和(he)(he)(he)(he)(he)(he)可出(chu)圖特點,可使城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)水平(ping)從現(xian)(xian)(xian)在(zai)(zai)(zai)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)字(zi)(zi)化、信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)化和(he)(he)(he)(he)(he)(he)網(wang)絡化向“智能(neng)(neng)(neng)化”方(fang)向邁進(jin)(jin)(jin)。城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)館(guan)原有(you)(you)CAD和(he)(he)(he)(he)(he)(he)GIS數(shu)(shu)(shu)據(ju)(ju)也屬于BIM數(shu)(shu)(shu)據(ju)(ju)整合(he)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)部(bu)分。目(mu)(mu)(mu)前(qian)(qian)(qian)已有(you)(you)大(da)量(liang)(liang)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)項(xiang)(xiang)目(mu)(mu)(mu)已經應(ying)(ying)用(yong)(yong)(yong)BIM技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)進(jin)(jin)(jin)行(xing)(xing)(xing)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao),如(ru)(ru):北(bei)京國(guo)家(jia)體育場(chang)(鳥巢)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)、昆明新(xin)機場(chang)機電(dian)設(she)(she)(she)備(bei)安裝(zhuang)與(yu)(yu)(yu)運(yun)(yun)維管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)、北(bei)京英特宜家(jia)購物中(zhong)心工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)、廣州市(shi)(shi)北(bei)京路沿線(xian)(xian)環(huan)境(jing)模(mo)(mo)擬(ni)(ni)(日(ri)照(zhao)、氣象(xiang))、內蒙古(gu)科(ke)技(ji)(ji)館(guan)新(xin)館(guan)異型曲面幕(mu)墻(qiang)施(shi)工(gong)(gong)(gong)(gong)等(deng)(deng)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)項(xiang)(xiang)目(mu)(mu)(mu)。BIM技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)能(neng)(neng)(neng)夠實(shi)(shi)現(xian)(xian)(xian)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)項(xiang)(xiang)目(mu)(mu)(mu)各參與(yu)(yu)(yu)方(fang)通過(guo)(guo)(guo)(guo)網(wang)絡進(jin)(jin)(jin)行(xing)(xing)(xing)協同工(gong)(gong)(gong)(gong)作(zuo)(zuo)(zuo),同時(shi),進(jin)(jin)(jin)行(xing)(xing)(xing)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)洽商(shang)、技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)溝通、工(gong)(gong)(gong)(gong)作(zuo)(zuo)(zuo)協調,實(shi)(shi)現(xian)(xian)(xian)施(shi)工(gong)(gong)(gong)(gong)質量(liang)(liang)、安全、進(jin)(jin)(jin)度和(he)(he)(he)(he)(he)(he)成(cheng)(cheng)本的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)與(yu)(yu)(yu)監控。在(zai)(zai)(zai)利(li)(li)(li)用(yong)(yong)(yong)BIM管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)項(xiang)(xiang)目(mu)(mu)(mu),BIM匯集(ji)著大(da)量(liang)(liang)與(yu)(yu)(yu)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)相(xiang)(xiang)關的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)據(ju)(ju)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi),為(wei)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)提(ti)(ti)供(gong)大(da)量(liang)(liang)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)據(ju)(ju)支(zhi)持,使業主、設(she)(she)(she)計(ji)單(dan)位、顧問咨詢公司、施(shi)工(gong)(gong)(gong)(gong)總承包(bao)(bao)、專業分包(bao)(bao)、材料和(he)(he)(he)(he)(he)(he)設(she)(she)(she)備(bei)供(gong)應(ying)(ying)商(shang)等(deng)(deng)眾多參建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)單(dan)位同在(zai)(zai)(zai)一(yi)(yi)(yi)個(ge)平(ping)臺(tai)(tai)上共享相(xiang)(xiang)關數(shu)(shu)(shu)據(ju)(ju),為(wei)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)提(ti)(ti)供(gong)最(zui)優方(fang)案(an)(an)(an)(an)。這(zhe)些(xie)數(shu)(shu)(shu)據(ju)(ju)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)都是(shi)(shi)(shi)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)中(zhong)產生的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)。這(zhe)些(xie)數(shu)(shu)(shu)據(ju)(ju)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)不(bu)(bu)(bu)當是(shi)(shi)(shi)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)成(cheng)(cheng)果(guo)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)據(ju)(ju),而(er)(er)(er)且還(huan)有(you)(you)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)過(guo)(guo)(guo)(guo)程(cheng)(cheng)(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)據(ju)(ju),特別(bie)是(shi)(shi)(shi)隱(yin)蔽工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)中(zhong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)相(xiang)(xiang)關數(shu)(shu)(shu)據(ju)(ju)(如(ru)(ru):地(di)(di)(di)基(ji)(ji)、地(di)(di)(di)下管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)線(xian)(xian)等(deng)(deng))。這(zhe)些(xie)數(shu)(shu)(shu)據(ju)(ju)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)集(ji)中(zhong)收集(ji)到(dao)(dao)(dao)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)館(guan)中(zhong)后(hou),利(li)(li)(li)用(yong)(yong)(yong)BIM平(ping)臺(tai)(tai)可再(zai)現(xian)(xian)(xian)原來(lai)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)過(guo)(guo)(guo)(guo)程(cheng)(cheng)(cheng)和(he)(he)(he)(he)(he)(he)模(mo)(mo)擬(ni)(ni)將(jiang)來(lai)運(yun)(yun)營、維護過(guo)(guo)(guo)(guo)程(cheng)(cheng)(cheng)。例如(ru)(ru):模(mo)(mo)擬(ni)(ni)一(yi)(yi)(yi)個(ge)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)筑出(chu)現(xian)(xian)(xian)設(she)(she)(she)備(bei)故障(zhang)怎(zen)么辦?出(chu)現(xian)(xian)(xian)危機(災害、反恐(kong)等(deng)(deng))怎(zen)么辦?某(mou)個(ge)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)筑的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)改建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)和(he)(he)(he)(he)(he)(he)擴建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)選用(yong)(yong)(yong)什么方(fang)案(an)(an)(an)(an)?隱(yin)蔽工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)和(he)(he)(he)(he)(he)(he)地(di)(di)(di)下管(guan)(guan)(guan)(guan)(guan)(guan)(guan)線(xian)(xian)也可以(yi)通過(guo)(guo)(guo)(guo)模(mo)(mo)擬(ni)(ni)再(zai)現(xian)(xian)(xian),而(er)(er)(er)不(bu)(bu)(bu)必再(zai)進(jin)(jin)(jin)行(xing)(xing)(xing)二次勘察(cha)、測繪等(deng)(deng)等(deng)(deng)。城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)運(yun)(yun)用(yong)(yong)(yong)BIM技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)后(hou),其管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)水平(ping)可提(ti)(ti)升到(dao)(dao)(dao)“智能(neng)(neng)(neng)化”管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)。查尋信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)不(bu)(bu)(bu)再(zai)需要(yao)(yao)(yao)查找(zhao)原始信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)進(jin)(jin)(jin)行(xing)(xing)(xing)分析,可直(zhi)接再(zai)現(xian)(xian)(xian)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)項(xiang)(xiang)目(mu)(mu)(mu)某(mou)一(yi)(yi)(yi)階段的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)結果(guo)。在(zai)(zai)(zai)前(qian)(qian)(qian)后(hou)相(xiang)(xiang)似的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)筑在(zai)(zai)(zai)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)過(guo)(guo)(guo)(guo)程(cheng)(cheng)(cheng)中(zhong),可以(yi)借見,以(yi)提(ti)(ti)高建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)效(xiao)率。隨(sui)著建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)技(ji)(ji)術(shu)(shu)(shu)(shu)(shu)發(fa)(fa)(fa)展(zhan)(zhan)和(he)(he)(he)(he)(he)(he)更(geng)新(xin),原有(you)(you)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)造(zao)(zao)(zao)工(gong)(gong)(gong)(gong)藝需要(yao)(yao)(yao)如(ru)(ru)何(he)調整和(he)(he)(he)(he)(he)(he)改進(jin)(jin)(jin)。只有(you)(you)這(zhe)樣,城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)工(gong)(gong)(gong)(gong)作(zuo)(zuo)(zuo)水平(ping)才會得到(dao)(dao)(dao)更(geng)高的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)提(ti)(ti)升。如(ru)(ru)此發(fa)(fa)(fa)展(zhan)(zhan),城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)機構就(jiu)不(bu)(bu)(bu)再(zai)是(shi)(shi)(shi)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)資源(yuan)(yuan)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)“倉庫”,可能(neng)(neng)(neng)就(jiu)成(cheng)(cheng)為(wei)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)信(xin)(xin)(xin)(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)(xi)資源(yuan)(yuan)利(li)(li)(li)用(yong)(yong)(yong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)“基(ji)(ji)地(di)(di)(di)”。過(guo)(guo)(guo)(guo)去我(wo)們說(shuo)城(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)檔(dang)(dang)(dang)(dang)(dang)案(an)(an)(an)(an)為(wei)城(cheng)(cheng)(cheng)(cheng)市(shi)(shi)規劃(hua)、建(jian)(jian)(jian)(jian)(jian)(jian)(jian)(jian)設(she)(she)(she)和(he)(he)(he)(he)(he)(he)管(guan)(guan)(guan)(guan)(guan)(guan)(guan)理(li)(li)(li)(li)提(ti)(ti)供(gong)決策依據(ju)(ju),將(jiang)來(lai)可能(neng)(neng)(neng)就(jiu)是(shi)(shi)(shi)提(ti)(ti)供(gong)決策方(fang)案(an)(an)(an)(an)了(le)(le)。

三、總結

篇2

(1)中(zhong)(zhong)標(biao)后成(cheng)本計劃:中(zhong)(zhong)標(biao)單位在中(zhong)(zhong)標(biao)后根(gen)據中(zhong)(zhong)標(biao)預(yu)算及施工(gong)組織

設計計劃在施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)中使用的人(ren)(ren)材(cai)(cai)(cai)機(ji)等(deng)(deng)用量,但在計劃時(shi)往往因為預算與實際人(ren)(ren)工(gong)(gong)(gong)、材(cai)(cai)(cai)料(liao)(liao)、機(ji)械無法(fa)很好的結合(he)對(dui)比(bi)(bi),在材(cai)(cai)(cai)料(liao)(liao)提計劃及測算工(gong)(gong)(gong)程(cheng)(cheng)施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)步(bu)驟工(gong)(gong)(gong)期等(deng)(deng)方(fang)(fang)(fang)面(mian)偏差較大。BIM本身(shen)精細到構件級的功能(neng)(neng),提供了(le)準備施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)人(ren)(ren)材(cai)(cai)(cai)機(ji)的數據(ju)量,并且三維(wei)可視(shi)化(hua)(hua)功能(neng)(neng)再加(jia)上時(shi)間(jian)維(wei)度,可以進(jin)行虛擬(ni)施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)。隨(sui)時(shi)隨(sui)地(di)直觀(guan)快速地(di)將施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)計劃與實際進(jin)展進(jin)行對(dui)比(bi)(bi),同時(shi)進(jin)行有效協同,施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)方(fang)(fang)(fang)、監理方(fang)(fang)(fang)、甚至非(fei)工(gong)(gong)(gong)程(cheng)(cheng)行業出(chu)身(shen)的業主領(ling)導(dao)都(dou)對(dui)工(gong)(gong)(gong)程(cheng)(cheng)項(xiang)目的各種(zhong)問(wen)題(ti)和(he)情況了(le)如指掌(zhang)。這樣(yang)通過(guo)BIM技術結合(he)施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)方(fang)(fang)(fang)案、施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)模(mo)擬(ni)和(he)現場視(shi)頻監測,大大減(jian)少(shao)建(jian)筑(zhu)質量問(wen)題(ti)、安全問(wen)題(ti),減(jian)少(shao)返工(gong)(gong)(gong)和(he)整改。并且利用BIM的三維(wei)技術在前期可以進(jin)行碰撞(zhuang)檢查,優化(hua)(hua)工(gong)(gong)(gong)程(cheng)(cheng)設計,減(jian)少(shao)在建(jian)筑(zhu)施(shi)(shi)(shi)(shi)工(gong)(gong)(gong)階段可能(neng)(neng)存在的錯誤(wu)損失和(he)返工(gong)(gong)(gong)的可能(neng)(neng)性,而(er)且優化(hua)(hua)凈空,優化(hua)(hua)管線排(pai)布方(fang)(fang)(fang)案,從(cong)而(er)為項(xiang)目節約(yue)時(shi)間(jian),降低成(cheng)本。

(2)過程成本控制(zhi):現階段項目成本過程控制(zhi)主要(yao)體現在兩方面

一、內部結算:主要控(kong)(kong)制外包勞務隊與材(cai)(cai)料(liao)(liao)采購量(liang)不超過預算量(liang),即收入不大于支(zhi)出。二、限(xian)額領料(liao)(liao):項目對于材(cai)(cai)料(liao)(liao)管理(li)采取根(gen)據(ju)(ju)(ju)施工(gong)(gong)預算對勞務隊進行限(xian)額領料(liao)(liao),但因為(wei)勞務隊繁多(duo),施工(gong)(gong)時(shi)(shi)間(jian)節(jie)點的穿插(cha),材(cai)(cai)料(liao)(liao)員(yuan)、施工(gong)(gong)員(yuan)不熟悉(xi)預算,限(xian)額領料(liao)(liao)措施往(wang)往(wang)執行困難。BIM技術(shu)根(gen)據(ju)(ju)(ju)時(shi)(shi)間(jian)節(jie)點準確(que)的預測(ce)施工(gong)(gong)時(shi)(shi)間(jian)節(jie)點,并提供(gong)海量(liang)的數據(ju)(ju)(ju)分(fen)析(xi)。BIM的出現(xian)(xian)可以讓相關管理(li)工(gong)(gong)作人員(yuan)條線(xian)快(kuai)速準確(que)地獲得工(gong)(gong)程基礎數據(ju)(ju)(ju),為(wei)施工(gong)(gong)企業制定精確(que)資金(jin)計劃(hua)提供(gong)有(you)效支(zhi)撐(cheng),為(wei)材(cai)(cai)料(liao)(liao)員(yuan)及施工(gong)(gong)員(yuan)實現(xian)(xian)限(xian)額領料(liao)(liao)、消(xiao)耗(hao)控(kong)(kong)制提供(gong)技術(shu)及數據(ju)(ju)(ju)支(zhi)撐(cheng)。

(3)期中成本核(he)算(suan):現階段項目期中成本核(he)算(suan),只能做(zuo)到施工預算(suan)

的(de)節點(dian)(dian)進(jin)(jin)行分析(正負零(ling)、主體封(feng)頂等(deng)),對(dui)于(yu)項(xiang)目成本運(yun)營掌控(kong)(kong)時(shi)間跨度(du)過大,經濟運(yun)行階段分析占項(xiang)目總進(jin)(jin)度(du)的(de)百分比不(bu)明確,項(xiang)目盈(ying)虧(kui)(kui)點(dian)(dian)較為(wei)模糊的(de)缺點(dian)(dian)。項(xiang)目而BIM數據(ju)庫可以(yi)(yi)實現(xian)任一時(shi)點(dian)(dian)上工程基礎信息的(de)快速獲取,通(tong)過合同、計(ji)劃與實際施工的(de)消耗量、分項(xiang)單(dan)價(jia)、分項(xiang)合價(jia)等(deng)數據(ju)的(de)多(duo)算對(dui)比,可以(yi)(yi)有效(xiao)了解項(xiang)目運(yun)營是盈(ying)是虧(kui)(kui),消耗量有無(wu)(wu)超(chao)標,進(jin)(jin)貨分包單(dan)價(jia)有無(wu)(wu)失控(kong)(kong)等(deng)等(deng)問題,實現(xian)對(dui)項(xiang)目成本風險(xian)的(de)有效(xiao)管控(kong)(kong)。

2、BIM應用的其他(ta)優勢

(1)對(dui)于設(she)計單位及建(jian)設(she)單位

由(you)于項目(mu)的復雜(za)性和設(she)計(ji)的多專業屬(shu)性,設(she)計(ji)圖紙的錯(cuo)漏碰缺無(wu)法避(bi)免,而所有由(you)于設(she)計(ji)圖紙錯(cuo)誤引起的成本增(zeng)長、工期延(yan)誤以及質量降低的帳最終都會(hui)算到中(zhong)標方,增(zeng)加(jia)了(le)(le)中(zhong)標方施工成本。BIM技術(shu)通過各種(zhong)不同類型的多專業協(xie)調綜合,通過運(yun)行軟(ruan)件可找到安裝管線與(yu)施工設(she)計(ji)上的碰撞(zhuang),避(bi)免了(le)(le)因設(she)計(ji)變更拖延(yan)工期,為各方節約了(le)(le)時間(jian)。

(2)對(dui)于(yu)施工單位現(xian)場的(de)幫助

在BIM模(mo)型(xing)基(ji)礎條件(jian)上(shang),利用多維(wei)模(mo)擬、可視化(hua)通訊等(deng)技術手段對項目的(de)施工計(ji)劃安(an)排、項目施工難點、模(mo)塊(kuai)化(hua)生產施工材料、特殊重(zhong)點和(he)隱蔽(bi)工程等(deng)在實(shi)際施工活動發生以前進(jin)行數字(zi)化(hua)分析(xi)、優(you)化(hua)工作,降低現場施工的(de)難度及(ji)節約成本。

(3)對于后期維護

利用BIM數(shu)據化模型(xing),專業維(wei)護(hu)人員對(dui)實際建筑(zhu)物的運營維(wei)護(hu)活動可以在虛擬建筑(zhu)物上進行(xing)計劃、分析、預演,從而提高(gao)維(wei)護(hu)階段的效率。

3、展望BIM與建筑行業(ye)的發展

篇3

1基于BIM技術(shu)的畢業(ye)設(she)計課題方向(xiang)

目(mu)(mu)前(qian)(qian)(qian)與(yu)(yu)BIM技(ji)術(shu)相(xiang)關(guan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)聚焦于(yu)(yu)基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu)應(ying)(ying)用(yong)(yong)、技(ji)術(shu)融合(he)(he)和(he)(he)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)研(yan)(yan)(yan)發(fa)(fa)(fa)(fa)(fa)等三(san)個主(zhu)(zhu)要(yao)(yao)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang),如(ru)圖1所示。1.1BIM基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu)應(ying)(ying)用(yong)(yong)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)。BIM基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu)應(ying)(ying)用(yong)(yong)多(duo)數是(shi)基(ji)(ji)(ji)(ji)于(yu)(yu)BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)開(kai)展(zhan)(zhan)相(xiang)關(guan)應(ying)(ying)用(yong)(yong)研(yan)(yan)(yan)究(jiu)(jiu)(jiu),是(shi)目(mu)(mu)前(qian)(qian)(qian)畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)(de)主(zhu)(zhu)流(liu)課(ke)題(ti)(ti)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)。如(ru)采用(yong)(yong)Revit軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)建立(li)三(san)維(wei)信息(xi)(xi)模型,在此基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu)上(shang)進(jin)行(xing)施工(gong)(gong)(gong)圖深化(hua)、碰撞監(jian)測、進(jin)度模擬(ni)、工(gong)(gong)(gong)程(cheng)量統(tong)計(ji)(ji)、造(zao)(zao)價分析(xi)和(he)(he)三(san)維(wei)動(dong)畫(hua)展(zhan)(zhan)示等工(gong)(gong)(gong)作。早(zao)期(qi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)對(dui)象以(yi)房屋建筑為(wei)主(zhu)(zhu),目(mu)(mu)前(qian)(qian)(qian)已拓展(zhan)(zhan)至(zhi)(zhi)橋梁、隧道(dao)、地(di)鐵(tie)等公(gong)(gong)共基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu)設(she)(she)(she)(she)施。在BIM應(ying)(ying)用(yong)(yong)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)方(fang)(fang)(fang)(fang)(fang)(fang)面,建模軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)以(yi)Revit最為(wei)常用(yong)(yong),碰撞檢查和(he)(he)動(dong)畫(hua)模擬(ni)多(duo)數采用(yong)(yong)Revisworks軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian),工(gong)(gong)(gong)程(cheng)算(suan)量和(he)(he)造(zao)(zao)價分析(xi)則常采用(yong)(yong)廣聯(lian)達(da)和(he)(he)魯班(ban)等國(guo)(guo)內(nei)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)。總(zong)體(ti)來(lai)看,該方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)的(de)(de)(de)(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)課(ke)題(ti)(ti)以(yi)應(ying)(ying)用(yong)(yong)為(wei)主(zhu)(zhu),課(ke)題(ti)(ti)的(de)(de)(de)(de)(de)(de)(de)(de)(de)完成(cheng)(cheng)(cheng)(cheng)情(qing)況與(yu)(yu)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)對(dui)象的(de)(de)(de)(de)(de)(de)(de)(de)(de)復雜(za)性、研(yan)(yan)(yan)究(jiu)(jiu)(jiu)內(nei)容的(de)(de)(de)(de)(de)(de)(de)(de)(de)豐富性、研(yan)(yan)(yan)究(jiu)(jiu)(jiu)成(cheng)(cheng)(cheng)(cheng)果的(de)(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)(shi)用(yong)(yong)性密(mi)切相(xiang)關(guan)。隨著(zhu)信息(xi)(xi)技(ji)術(shu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)快速發(fa)(fa)(fa)(fa)(fa)展(zhan)(zhan),當(dang)代大(da)學生的(de)(de)(de)(de)(de)(de)(de)(de)(de)計(ji)(ji)算(suan)機(ji)應(ying)(ying)用(yong)(yong)能(neng)(neng)(neng)力(li)、新(xin)(xin)知識(shi)接受能(neng)(neng)(neng)力(li)和(he)(he)創新(xin)(xin)能(neng)(neng)(neng)力(li)也(ye)在不(bu)斷提(ti)高,早(zao)期(qi)以(yi)多(duo)高層房屋為(wei)對(dui)象的(de)(de)(de)(de)(de)(de)(de)(de)(de)“建模+動(dong)畫(hua)+算(suan)量”的(de)(de)(de)(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)課(ke)題(ti)(ti)已難(nan)以(yi)滿足培(pei)養目(mu)(mu)標的(de)(de)(de)(de)(de)(de)(de)(de)(de)要(yao)(yao)求。因此,該類課(ke)題(ti)(ti)的(de)(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)對(dui)象正逐步(bu)(bu)拓展(zhan)(zhan)至(zhi)(zhi)超高層建筑、大(da)跨空(kong)間建筑、鋼木結構(gou)(gou)建筑、地(di)鐵(tie)隧道(dao)等公(gong)(gong)共基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu)設(she)(she)(she)(she)施和(he)(he)市政(zheng)工(gong)(gong)(gong)程(cheng)項(xiang)目(mu)(mu);研(yan)(yan)(yan)究(jiu)(jiu)(jiu)內(nei)容也(ye)延伸(shen)至(zhi)(zhi)進(jin)度控制(zhi)(zhi)、成(cheng)(cheng)(cheng)(cheng)本管(guan)理(li)乃至(zhi)(zhi)運(yun)營(ying)維(wei)護等多(duo)個方(fang)(fang)(fang)(fang)(fang)(fang)面;同時(shi)(shi)(shi),研(yan)(yan)(yan)究(jiu)(jiu)(jiu)課(ke)題(ti)(ti)也(ye)越來(lai)越多(duo)地(di)來(lai)源(yuan)于(yu)(yu)實(shi)(shi)(shi)(shi)際工(gong)(gong)(gong)程(cheng),研(yan)(yan)(yan)究(jiu)(jiu)(jiu)成(cheng)(cheng)(cheng)(cheng)果的(de)(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)(shi)用(yong)(yong)性已成(cheng)(cheng)(cheng)(cheng)為(wei)畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)成(cheng)(cheng)(cheng)(cheng)績評(ping)定(ding)的(de)(de)(de)(de)(de)(de)(de)(de)(de)重(zhong)要(yao)(yao)依據(ju)(ju)之(zhi)一。1.2BIM與(yu)(yu)前(qian)(qian)(qian)沿技(ji)術(shu)融合(he)(he)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)。隨著(zhu)BIM技(ji)術(shu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)逐步(bu)(bu)普及,其應(ying)(ying)用(yong)(yong)和(he)(he)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)正在從傳(chuan)統(tong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)輔助(zhu)設(she)(she)(she)(she)計(ji)(ji)施工(gong)(gong)(gong)向(xiang)(xiang)多(duo)技(ji)術(shu)融合(he)(he)的(de)(de)(de)(de)(de)(de)(de)(de)(de)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)發(fa)(fa)(fa)(fa)(fa)展(zhan)(zhan)。如(ru)BIM與(yu)(yu)RFID(RadioFrequencyIdentification,無(wu)線(xian)射頻識(shi)別)、BIM與(yu)(yu)GIS(GeographicInformationSystem,地(di)理(li)信息(xi)(xi)系統(tong))、BIM與(yu)(yu)VR(VirtualReality,虛(xu)擬(ni)現實(shi)(shi)(shi)(shi))、BIM與(yu)(yu)AR(AugmentedReality,增(zeng)強現實(shi)(shi)(shi)(shi))、BIM與(yu)(yu)三(san)維(wei)激光掃(sao)描、BIM與(yu)(yu)結構(gou)(gou)健(jian)康監(jian)測等前(qian)(qian)(qian)沿技(ji)術(shu)融合(he)(he)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)。以(yi)BIM與(yu)(yu)RFID技(ji)術(shu)融合(he)(he)為(wei)例,在傳(chuan)統(tong)的(de)(de)(de)(de)(de)(de)(de)(de)(de)施工(gong)(gong)(gong)現場,大(da)批量地(di)進(jin)行(xing)構(gou)(gou)件(jian)(jian)(jian)(jian)(jian)驗收、安裝時(shi)(shi)(shi),主(zhu)(zhu)要(yao)(yao)通(tong)過人(ren)工(gong)(gong)(gong)方(fang)(fang)(fang)(fang)(fang)(fang)式(shi)填寫報告、錄入數據(ju)(ju),信息(xi)(xi)延誤(wu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)現象時(shi)(shi)(shi)有(you)(you)發(fa)(fa)(fa)(fa)(fa)生,工(gong)(gong)(gong)作人(ren)員(yuan)常常無(wu)法(fa)判(pan)斷構(gou)(gou)件(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)真實(shi)(shi)(shi)(shi)狀(zhuang)況,很容易發(fa)(fa)(fa)(fa)(fa)生錯誤(wu),導(dao)(dao)致各(ge)類問題(ti)(ti)頻發(fa)(fa)(fa)(fa)(fa)。利用(yong)(yong)RFID技(ji)術(shu)可(ke)以(yi)實(shi)(shi)(shi)(shi)時(shi)(shi)(shi)追蹤、監(jian)控構(gou)(gou)件(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)生產、運(yun)輸、安裝和(he)(he)運(yun)維(wei)狀(zhuang)態,并以(yi)無(wu)線(xian)網絡(luo)即時(shi)(shi)(shi)傳(chuan)遞信息(xi)(xi)到BIM數據(ju)(ju)處(chu)理(li)平臺,可(ke)以(yi)實(shi)(shi)(shi)(shi)現對(dui)構(gou)(gou)件(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)(shi)時(shi)(shi)(shi)追蹤,解決信息(xi)(xi)錯誤(wu)和(he)(he)丟失等問題(ti)(ti),能(neng)(neng)(neng)有(you)(you)效地(di)提(ti)高工(gong)(gong)(gong)程(cheng)項(xiang)目(mu)(mu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)管(guan)理(li)效率和(he)(he)經濟(ji)效益(yi)。該類畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)課(ke)題(ti)(ti)通(tong)常要(yao)(yao)求指(zhi)導(dao)(dao)教(jiao)師(shi)有(you)(you)一定(ding)的(de)(de)(de)(de)(de)(de)(de)(de)(de)前(qian)(qian)(qian)期(qi)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu),有(you)(you)時(shi)(shi)(shi)采用(yong)(yong)校(xiao)企(qi)(qi)聯(lian)合(he)(he)指(zhi)導(dao)(dao)方(fang)(fang)(fang)(fang)(fang)(fang)式(shi),由企(qi)(qi)業(ye)(ye)導(dao)(dao)師(shi)制(zhi)(zhi)定(ding)課(ke)題(ti)(ti)的(de)(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)內(nei)容,畢(bi)(bi)業(ye)(ye)設(she)(she)(she)(she)計(ji)(ji)開(kai)展(zhan)(zhan)過程(cheng)中由校(xiao)內(nei)和(he)(he)校(xiao)外導(dao)(dao)師(shi)共同指(zhi)導(dao)(dao)。1.3BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)研(yan)(yan)(yan)發(fa)(fa)(fa)(fa)(fa)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang)。BIM的(de)(de)(de)(de)(de)(de)(de)(de)(de)核心思想(xiang)是(shi)信息(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)集成(cheng)(cheng)(cheng)(cheng)、交互與(yu)(yu)共享,模型是(shi)載體(ti),軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)是(shi)工(gong)(gong)(gong)具。在BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)平臺研(yan)(yan)(yan)發(fa)(fa)(fa)(fa)(fa)方(fang)(fang)(fang)(fang)(fang)(fang)面,國(guo)(guo)內(nei)外各(ge)大(da)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)開(kai)發(fa)(fa)(fa)(fa)(fa)商(shang)(shang)已經開(kai)發(fa)(fa)(fa)(fa)(fa)了(le)各(ge)類適用(yong)(yong)于(yu)(yu)建筑不(bu)同階段(duan)、提(ti)供不(bu)同功(gong)(gong)能(neng)(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)商(shang)(shang)業(ye)(ye)BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)。如(ru),美國(guo)(guo)Autodesk公(gong)(gong)司推(tui)出的(de)(de)(de)(de)(de)(de)(de)(de)(de)Revit、Navisworks、Civil3D等BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian);美國(guo)(guo)Bentley公(gong)(gong)司推(tui)出的(de)(de)(de)(de)(de)(de)(de)(de)(de)ABD(AECOsimBuildingDesigner)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian);此外還(huan)有(you)(you)Tekla公(gong)(gong)司開(kai)發(fa)(fa)(fa)(fa)(fa)的(de)(de)(de)(de)(de)(de)(de)(de)(de)專用(yong)(yong)于(yu)(yu)鋼結構(gou)(gou)設(she)(she)(she)(she)計(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)(de)Xsteel軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian),Graphisoft公(gong)(gong)司的(de)(de)(de)(de)(de)(de)(de)(de)(de)ArchiCAD軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)等。國(guo)(guo)內(nei)也(ye)有(you)(you)廣聯(lian)達(da)、魯班(ban)、PKPM、3D3S等公(gong)(gong)司開(kai)發(fa)(fa)(fa)(fa)(fa)的(de)(de)(de)(de)(de)(de)(de)(de)(de)相(xiang)關(guan)BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)。雖然(ran)商(shang)(shang)用(yong)(yong)BIM軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)已較為(wei)成(cheng)(cheng)(cheng)(cheng)熟,但針對(dui)不(bu)同對(dui)象、不(bu)同功(gong)(gong)能(neng)(neng)(neng)、不(bu)同企(qi)(qi)業(ye)(ye)均存在一定(ding)的(de)(de)(de)(de)(de)(de)(de)(de)(de)局限性,尚需(xu)(xu)定(ding)制(zhi)(zhi)研(yan)(yan)(yan)發(fa)(fa)(fa)(fa)(fa)。相(xiang)比于(yu)(yu)BIM應(ying)(ying)用(yong)(yong)方(fang)(fang)(fang)(fang)(fang)(fang)向(xiang)(xiang),軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)研(yan)(yan)(yan)發(fa)(fa)(fa)(fa)(fa)類課(ke)題(ti)(ti)一方(fang)(fang)(fang)(fang)(fang)(fang)面要(yao)(yao)求指(zhi)導(dao)(dao)教(jiao)師(shi)有(you)(you)前(qian)(qian)(qian)期(qi)研(yan)(yan)(yan)究(jiu)(jiu)(jiu)基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu),另一方(fang)(fang)(fang)(fang)(fang)(fang)面要(yao)(yao)求學生有(you)(you)一定(ding)的(de)(de)(de)(de)(de)(de)(de)(de)(de)編(bian)程(cheng)基(ji)(ji)(ji)(ji)礎(chu)(chu)(chu),更(geng)重(zhong)要(yao)(yao)的(de)(de)(de)(de)(de)(de)(de)(de)(de)是(shi)對(dui)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)編(bian)程(cheng)有(you)(you)興趣。此外,也(ye)有(you)(you)部(bu)分研(yan)(yan)(yan)發(fa)(fa)(fa)(fa)(fa)類課(ke)題(ti)(ti)不(bu)需(xu)(xu)要(yao)(yao)編(bian)寫代碼,只(zhi)需(xu)(xu)要(yao)(yao)設(she)(she)(she)(she)計(ji)(ji)軟(ruan)(ruan)(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)功(gong)(gong)能(neng)(neng)(neng)和(he)(he)操作界面等,具體(ti)編(bian)程(cheng)工(gong)(gong)(gong)作由他人(ren)或(huo)企(qi)(qi)業(ye)(ye)來(lai)完成(cheng)(cheng)(cheng)(cheng)。

2基于BIM技術的畢業設計案例

2.1BIM基(ji)礎應用(yong)(yong)(yong)方(fang)向畢(bi)(bi)業(ye)(ye)設(she)計(ji)(ji)案例(li)。以(yi)(yi)同(tong)濟大(da)學(xue)(xue)本(ben)(ben)科畢(bi)(bi)業(ye)(ye)論文(wen)(wen)“超(chao)高(gao)(gao)層(ceng)建(jian)(jian)筑(zhu)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊化仿真設(she)計(ji)(ji)與(yu)(yu)建(jian)(jian)造(zao)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)研(yan)(yan)(yan)究(jiu)”為(wei)(wei)案例(li)。該(gai)論文(wen)(wen)以(yi)(yi)上海市真如城(cheng)市副中(zhong)心(xin)(xin)A5地(di)塊項目(mu)1號辦公(gong)樓為(wei)(wei)實(shi)(shi)(shi)際(ji)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)程背景(jing),借助(zhu)(zhu)BIM工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)具(ju)對(dui)(dui)鋼(gang)(gang)柱(zhu)筒(tong)(tong)(tong)架(jia)(jia)(jia)(jia)(jia)交(jiao)替支撐式(shi)整(zheng)(zheng)(zheng)體(ti)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)開展研(yan)(yan)(yan)究(jiu),完成(cheng)(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)主(zhu)要工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo)包(bao)括:(1)對(dui)(dui)鋼(gang)(gang)柱(zhu)筒(tong)(tong)(tong)架(jia)(jia)(jia)(jia)(jia)交(jiao)替支撐式(shi)整(zheng)(zheng)(zheng)體(ti)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)系(xi)統(tong)組(zu)(zu)成(cheng)(cheng)和(he)(he)(he)(he)(he)(he)(he)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)藝(yi)原(yuan)理(li)進(jin)(jin)(jin)(jin)行(xing)(xing)歸(gui)納總結,對(dui)(dui)超(chao)高(gao)(gao)層(ceng)結構(gou)(gou)(gou)核(he)心(xin)(xin)筒(tong)(tong)(tong)使用(yong)(yong)(yong)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)關鍵技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)進(jin)(jin)(jin)(jin)行(xing)(xing)分(fen)析(xi)(xi),包(bao)括模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)的(de)(de)(de)(de)(de)(de)(de)(de)現(xian)場安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)、標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)層(ceng)施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)、桁架(jia)(jia)(jia)(jia)(jia)層(ceng)施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)和(he)(he)(he)(he)(he)(he)(he)墻(qiang)體(ti)收分(fen)層(ceng)施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)等(deng)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu);(2)分(fen)析(xi)(xi)鋼(gang)(gang)柱(zhu)筒(tong)(tong)(tong)架(jia)(jia)(jia)(jia)(jia)交(jiao)替支撐式(shi)整(zheng)(zheng)(zheng)體(ti)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)的(de)(de)(de)(de)(de)(de)(de)(de)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊化設(she)計(ji)(ji)方(fang)法,初步確定模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)庫,根據模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)創建(jian)(jian)Revit參(can)數(shu)化族庫,對(dui)(dui)標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)和(he)(he)(he)(he)(he)(he)(he)非(fei)標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)進(jin)(jin)(jin)(jin)行(xing)(xing)組(zu)(zu)合(he)(he)(he),并(bing)進(jin)(jin)(jin)(jin)行(xing)(xing)整(zheng)(zheng)(zheng)體(ti)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)的(de)(de)(de)(de)(de)(de)(de)(de)虛擬預拼(pin)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang);(3)根據二(er)維(wei)(wei)設(she)計(ji)(ji)圖(tu)紙建(jian)(jian)立該(gai)超(chao)高(gao)(gao)層(ceng)建(jian)(jian)筑(zhu)的(de)(de)(de)(de)(de)(de)(de)(de)核(he)心(xin)(xin)筒(tong)(tong)(tong)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing),采(cai)(cai)用(yong)(yong)(yong)Navisworks進(jin)(jin)(jin)(jin)行(xing)(xing)整(zheng)(zheng)(zheng)體(ti)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing)和(he)(he)(he)(he)(he)(he)(he)核(he)心(xin)(xin)筒(tong)(tong)(tong)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing)的(de)(de)(de)(de)(de)(de)(de)(de)合(he)(he)(he)模(mo)(mo)(mo)(mo)(mo)(mo)(mo),對(dui)(dui)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)關鍵技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)進(jin)(jin)(jin)(jin)行(xing)(xing)可(ke)(ke)視(shi)化施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)擬。畢(bi)(bi)業(ye)(ye)設(she)計(ji)(ji)成(cheng)(cheng)果提(ti)出了(le)(le)(le)一(yi)(yi)種鋼(gang)(gang)柱(zhu)筒(tong)(tong)(tong)架(jia)(jia)(jia)(jia)(jia)交(jiao)替支撐式(shi)整(zheng)(zheng)(zheng)體(ti)鋼(gang)(gang)平臺(tai)(tai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)的(de)(de)(de)(de)(de)(de)(de)(de)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊化方(fang)案,借助(zhu)(zhu)BIM軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)建(jian)(jian)立了(le)(le)(le)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)族以(yi)(yi)及(ji)(ji)核(he)心(xin)(xin)筒(tong)(tong)(tong)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing),完成(cheng)(cheng)了(le)(le)(le)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊的(de)(de)(de)(de)(de)(de)(de)(de)組(zu)(zu)合(he)(he)(he)與(yu)(yu)拼(pin)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang),實(shi)(shi)(shi)現(xian)了(le)(le)(le)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)和(he)(he)(he)(he)(he)(he)(he)核(he)心(xin)(xin)筒(tong)(tong)(tong)的(de)(de)(de)(de)(de)(de)(de)(de)合(he)(he)(he)模(mo)(mo)(mo)(mo)(mo)(mo)(mo),并(bing)對(dui)(dui)鋼(gang)(gang)平臺(tai)(tai)安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)、標(biao)(biao)(biao)準(zhun)(zhun)(zhun)(zhun)層(ceng)施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)、收分(fen)層(ceng)施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)等(deng)進(jin)(jin)(jin)(jin)行(xing)(xing)了(le)(le)(le)三(san)維(wei)(wei)可(ke)(ke)視(shi)化分(fen)析(xi)(xi)。該(gai)畢(bi)(bi)業(ye)(ye)設(she)計(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)究(jiu)成(cheng)(cheng)果已(yi)(yi)(yi)應用(yong)(yong)(yong)于實(shi)(shi)(shi)際(ji)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)程項目(mu)中(zhong),對(dui)(dui)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)架(jia)(jia)(jia)(jia)(jia)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)備(bei)(bei)的(de)(de)(de)(de)(de)(de)(de)(de)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊化和(he)(he)(he)(he)(he)(he)(he)BIM技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)(de)(de)推(tui)廣(guang)具(ju)有積(ji)極(ji)作(zuo)用(yong)(yong)(yong)。2.2BIM與(yu)(yu)前(qian)沿技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)融合(he)(he)(he)方(fang)向畢(bi)(bi)業(ye)(ye)設(she)計(ji)(ji)案例(li)。目(mu)前(qian),BIM與(yu)(yu)GIS、VR、RFID、三(san)維(wei)(wei)激光(guang)掃描(miao)等(deng)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)(de)(de)融合(he)(he)(he)交(jiao)叉(cha)應用(yong)(yong)(yong)已(yi)(yi)(yi)成(cheng)(cheng)為(wei)(wei)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)程界(jie)(jie)和(he)(he)(he)(he)(he)(he)(he)學(xue)(xue)術(shu)(shu)(shu)界(jie)(jie)的(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)究(jiu)熱點(dian)(dian)。以(yi)(yi)三(san)維(wei)(wei)激光(guang)掃描(miao)為(wei)(wei)例(li),該(gai)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)是(shi)測(ce)繪領域繼GPS之后(hou)(hou)的(de)(de)(de)(de)(de)(de)(de)(de)又一(yi)(yi)次(ci)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)革命,通過(guo)(guo)高(gao)(gao)速(su)激光(guang)掃描(miao)測(ce)量方(fang)法,大(da)面(mian)(mian)積(ji)、高(gao)(gao)分(fen)辨率(lv)地(di)快(kuai)速(su)獲(huo)取(qu)物體(ti)表面(mian)(mian)各點(dian)(dian)的(de)(de)(de)(de)(de)(de)(de)(de)坐標(biao)(biao)(biao)、反(fan)射率(lv)、顏色等(deng)信(xin)(xin)息(xi)(xi),基(ji)于這(zhe)些(xie)(xie)大(da)量、密集的(de)(de)(de)(de)(de)(de)(de)(de)點(dian)(dian)信(xin)(xin)息(xi)(xi)可(ke)(ke)快(kuai)速(su)復建(jian)(jian)出真彩色三(san)維(wei)(wei)點(dian)(dian)云模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing),為(wei)(wei)后(hou)(hou)續的(de)(de)(de)(de)(de)(de)(de)(de)數(shu)據分(fen)析(xi)(xi)等(deng)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo)提(ti)供(gong)(gong)準(zhun)(zhun)(zhun)(zhun)確依據。該(gai)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)具(ju)有快(kuai)速(su)性(xing)、非(fei)接觸性(xing)、穿透性(xing)、高(gao)(gao)密度、高(gao)(gao)精(jing)度、實(shi)(shi)(shi)時(shi)性(xing)強(qiang)等(deng)特點(dian)(dian),很好(hao)地(di)解(jie)決(jue)了(le)(le)(le)目(mu)前(qian)空(kong)間(jian)信(xin)(xin)息(xi)(xi)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)發(fa)(fa)展實(shi)(shi)(shi)時(shi)性(xing)與(yu)(yu)準(zhun)(zhun)(zhun)(zhun)確性(xing)的(de)(de)(de)(de)(de)(de)(de)(de)頸瓶。以(yi)(yi)同(tong)濟大(da)學(xue)(xue)本(ben)(ben)科畢(bi)(bi)業(ye)(ye)論文(wen)(wen)“基(ji)于BIM技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)對(dui)(dui)既(ji)(ji)有建(jian)(jian)筑(zhu)快(kuai)速(su)建(jian)(jian)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)方(fang)法的(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)究(jiu)”為(wei)(wei)案例(li),該(gai)論文(wen)(wen)針(zhen)對(dui)(dui)目(mu)前(qian)既(ji)(ji)有建(jian)(jian)筑(zhu)建(jian)(jian)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)時(shi)面(mian)(mian)臨的(de)(de)(de)(de)(de)(de)(de)(de)竣(jun)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)圖(tu)紙無跡可(ke)(ke)尋、空(kong)間(jian)幾何信(xin)(xin)息(xi)(xi)難(nan)以(yi)(yi)采(cai)(cai)集、建(jian)(jian)筑(zhu)物細部特征難(nan)以(yi)(yi)捕捉(zhuo)、測(ce)量所需時(shi)間(jian)及(ji)(ji)金錢成(cheng)(cheng)本(ben)(ben)過(guo)(guo)高(gao)(gao)等(deng)問題,采(cai)(cai)用(yong)(yong)(yong)三(san)維(wei)(wei)激光(guang)掃描(miao)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)對(dui)(dui)上海某(mou)演藝(yi)場所進(jin)(jin)(jin)(jin)行(xing)(xing)掃描(miao),利用(yong)(yong)(yong)JRC3DReconstruction軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)對(dui)(dui)點(dian)(dian)云數(shu)據進(jin)(jin)(jin)(jin)行(xing)(xing)降(jiang)噪與(yu)(yu)配準(zhun)(zhun)(zhun)(zhun),再采(cai)(cai)用(yong)(yong)(yong)ICP算法進(jin)(jin)(jin)(jin)行(xing)(xing)平滑操(cao)作(zuo),最后(hou)(hou)對(dui)(dui)該(gai)建(jian)(jian)筑(zhu)進(jin)(jin)(jin)(jin)行(xing)(xing)整(zheng)(zheng)(zheng)體(ti)建(jian)(jian)模(mo)(mo)(mo)(mo)(mo)(mo)(mo),生成(cheng)(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)三(san)維(wei)(wei)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing)見(jian)圖(tu)3所示。該(gai)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing)已(yi)(yi)(yi)用(yong)(yong)(yong)于其改造(zao)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)程的(de)(de)(de)(de)(de)(de)(de)(de)后(hou)(hou)期設(she)計(ji)(ji)與(yu)(yu)研(yan)(yan)(yan)究(jiu)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo)中(zhong)。2.3BIM軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)研(yan)(yan)(yan)發(fa)(fa)方(fang)向畢(bi)(bi)業(ye)(ye)設(she)計(ji)(ji)案例(li)。以(yi)(yi)同(tong)濟大(da)學(xue)(xue)本(ben)(ben)科畢(bi)(bi)業(ye)(ye)論文(wen)(wen)“基(ji)于二(er)維(wei)(wei)碼(ma)(ma)的(de)(de)(de)(de)(de)(de)(de)(de)鋼(gang)(gang)結構(gou)(gou)(gou)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)追(zhui)蹤(zong)管(guan)(guan)(guan)理(li)軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)研(yan)(yan)(yan)發(fa)(fa)”為(wei)(wei)案例(li),該(gai)論文(wen)(wen)從研(yan)(yan)(yan)究(jiu)國內外(wai)(wai)鋼(gang)(gang)結構(gou)(gou)(gou)BIM建(jian)(jian)造(zao)管(guan)(guan)(guan)理(li)平臺(tai)(tai)入手,分(fen)析(xi)(xi)了(le)(le)(le)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)信(xin)(xin)息(xi)(xi)追(zhui)蹤(zong)管(guan)(guan)(guan)理(li)平臺(tai)(tai)的(de)(de)(de)(de)(de)(de)(de)(de)研(yan)(yan)(yan)發(fa)(fa)和(he)(he)(he)(he)(he)(he)(he)應用(yong)(yong)(yong)現(xian)狀,將BIM技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)與(yu)(yu)二(er)維(wei)(wei)碼(ma)(ma)技(ji)(ji)(ji)(ji)(ji)(ji)術(shu)(shu)(shu)相結合(he)(he)(he),設(she)計(ji)(ji)了(le)(le)(le)基(ji)于二(er)維(wei)(wei)碼(ma)(ma)的(de)(de)(de)(de)(de)(de)(de)(de)鋼(gang)(gang)結構(gou)(gou)(gou)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)追(zhui)蹤(zong)管(guan)(guan)(guan)理(li)軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)主(zhu)要功(gong)能(neng)(neng)和(he)(he)(he)(he)(he)(he)(he)界(jie)(jie)面(mian)(mian),基(ji)于B/S架(jia)(jia)(jia)(jia)(jia)構(gou)(gou)(gou),采(cai)(cai)用(yong)(yong)(yong)Html、JavaScript和(he)(he)(he)(he)(he)(he)(he)Neo4j等(deng)語言(yan)初步實(shi)(shi)(shi)現(xian)了(le)(le)(le)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)追(zhui)蹤(zong)和(he)(he)(he)(he)(he)(he)(he)進(jin)(jin)(jin)(jin)度管(guan)(guan)(guan)理(li)等(deng)基(ji)本(ben)(ben)功(gong)能(neng)(neng)。構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)追(zhui)蹤(zong)界(jie)(jie)面(mian)(mian)見(jian)圖(tu)4所示,軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)對(dui)(dui)每(mei)一(yi)(yi)根構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)生成(cheng)(cheng)唯一(yi)(yi)的(de)(de)(de)(de)(de)(de)(de)(de)二(er)維(wei)(wei)碼(ma)(ma),支持單獨或批(pi)量下載(zai)功(gong)能(neng)(neng)。二(er)維(wei)(wei)碼(ma)(ma)存儲構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)編號、安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)位置、尺寸(cun)、長度和(he)(he)(he)(he)(he)(he)(he)質量等(deng)基(ji)礎信(xin)(xin)息(xi)(xi)。用(yong)(yong)(yong)手機掃描(miao)二(er)維(wei)(wei)碼(ma)(ma)即可(ke)(ke)查看構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)報驗和(he)(he)(he)(he)(he)(he)(he)質量檢驗等(deng)詳(xiang)細信(xin)(xin)息(xi)(xi)。通過(guo)(guo)二(er)維(wei)(wei)碼(ma)(ma)功(gong)能(neng)(neng),可(ke)(ke)追(zhui)蹤(zong)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)生產(chan)、制作(zuo)、運輸和(he)(he)(he)(he)(he)(he)(he)安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)等(deng)全(quan)過(guo)(guo)程信(xin)(xin)息(xi)(xi),實(shi)(shi)(shi)現(xian)對(dui)(dui)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)加工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)和(he)(he)(he)(he)(he)(he)(he)安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)中(zhong)的(de)(de)(de)(de)(de)(de)(de)(de)質量監(jian)控信(xin)(xin)息(xi)(xi)以(yi)(yi)及(ji)(ji)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)進(jin)(jin)(jin)(jin)度信(xin)(xin)息(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)時(shi)掌控,而這(zhe)些(xie)(xie)信(xin)(xin)息(xi)(xi)直接反(fan)映到(dao)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)位置管(guan)(guan)(guan)理(li)、質量管(guan)(guan)(guan)理(li)和(he)(he)(he)(he)(he)(he)(he)安(an)裝(zhuang)(zhuang)(zhuang)(zhuang)(zhuang)進(jin)(jin)(jin)(jin)度管(guan)(guan)(guan)理(li)中(zhong),為(wei)(wei)這(zhe)些(xie)(xie)管(guan)(guan)(guan)理(li)活(huo)動的(de)(de)(de)(de)(de)(de)(de)(de)進(jin)(jin)(jin)(jin)行(xing)(xing)提(ti)供(gong)(gong)了(le)(le)(le)幫助(zhu)(zhu)和(he)(he)(he)(he)(he)(he)(he)支持,追(zhui)溯到(dao)最上層(ceng)則實(shi)(shi)(shi)現(xian)了(le)(le)(le)加工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)制作(zuo)計(ji)(ji)劃的(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)時(shi)調整(zheng)(zheng)(zheng),而加工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)制作(zuo)的(de)(de)(de)(de)(de)(de)(de)(de)調整(zheng)(zheng)(zheng)又決(jue)定了(le)(le)(le)現(xian)場施(shi)(shi)(shi)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)情(qing)況。此外(wai)(wai),通過(guo)(guo)二(er)維(wei)(wei)碼(ma)(ma)信(xin)(xin)息(xi)(xi)能(neng)(neng)夠直觀快(kuai)速(su)地(di)發(fa)(fa)現(xian)現(xian)場質量問題,解(jie)決(jue)現(xian)場管(guan)(guan)(guan)理(li)人員攜帶(dai)圖(tu)紙及(ji)(ji)查詢資料(liao)不方(fang)便等(deng)問題,提(ti)高(gao)(gao)了(le)(le)(le)現(xian)場工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo)效率(lv)。本(ben)(ben)軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)開發(fa)(fa)涉及(ji)(ji)BIM模(mo)(mo)(mo)(mo)(mo)(mo)(mo)型(xing)的(de)(de)(de)(de)(de)(de)(de)(de)解(jie)析(xi)(xi)、上傳和(he)(he)(he)(he)(he)(he)(he)顯示等(deng)功(gong)能(neng)(neng),這(zhe)些(xie)(xie)功(gong)能(neng)(neng)的(de)(de)(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)現(xian)需要大(da)量的(de)(de)(de)(de)(de)(de)(de)(de)編程工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo),很難(nan)由一(yi)(yi)位本(ben)(ben)科生在畢(bi)(bi)業(ye)(ye)論文(wen)(wen)周期內完成(cheng)(cheng)所有工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo),因此,軟(ruan)(ruan)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)前(qian)期開發(fa)(fa)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo)已(yi)(yi)(yi)由指導教(jiao)師(shi)團隊完成(cheng)(cheng),本(ben)(ben)論文(wen)(wen)主(zhu)要是(shi)實(shi)(shi)(shi)現(xian)了(le)(le)(le)基(ji)于二(er)維(wei)(wei)碼(ma)(ma)的(de)(de)(de)(de)(de)(de)(de)(de)鋼(gang)(gang)結構(gou)(gou)(gou)構(gou)(gou)(gou)件(jian)(jian)(jian)(jian)(jian)(jian)(jian)追(zhui)蹤(zong)管(guan)(guan)(guan)理(li)功(gong)能(neng)(neng)模(mo)(mo)(mo)(mo)(mo)(mo)(mo)塊的(de)(de)(de)(de)(de)(de)(de)(de)設(she)計(ji)(ji)和(he)(he)(he)(he)(he)(he)(he)研(yan)(yan)(yan)發(fa)(fa)工(gong)(gong)(gong)(gong)(gong)(gong)(gong)(gong)作(zuo)。

3提升基于BIM技(ji)術的畢業設計效果建議

3.1增加前(qian)沿課(ke)(ke)(ke)題(ti)數量。目(mu)(mu)前(qian),BIM方向的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)仍然以(yi)“建(jian)(jian)(jian)模+動(dong)畫+算(suan)量”的(de)(de)(de)(de)(de)(de)軟(ruan)件應(ying)(ying)(ying)用(yong)(yong)型課(ke)(ke)(ke)題(ti)為(wei)主導(dao),雖(sui)(sui)然該(gai)類(lei)(lei)(lei)(lei)課(ke)(ke)(ke)題(ti)的(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)(shi)(shi)用(yong)(yong)性(xing)強(qiang)(qiang),但(dan)(dan)(dan)往往工(gong)(gong)作(zuo)(zuo)(zuo)量大(da)而(er)(er)難度不(bu)大(da),特別是(shi)(shi)對一(yi)(yi)(yi)些(xie)研(yan)(yan)究型高(gao)校(xiao)(xiao)的(de)(de)(de)(de)(de)(de)學(xue)生(sheng)(sheng)(sheng)(sheng),該(gai)類(lei)(lei)(lei)(lei)課(ke)(ke)(ke)題(ti)的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)主要是(shi)(shi)提(ti)高(gao)了(le)(le)學(xue)生(sheng)(sheng)(sheng)(sheng)的(de)(de)(de)(de)(de)(de)BIM軟(ruan)件使用(yong)(yong)能(neng)(neng)(neng)(neng)力(li)(li),對學(xue)生(sheng)(sheng)(sheng)(sheng)的(de)(de)(de)(de)(de)(de)創新(xin)性(xing)培(pei)(pei)養不(bu)足(zu)(zu)(zu)。隨(sui)著信息技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)快(kuai)速發(fa)(fa)展(zhan),建(jian)(jian)(jian)議增加BIM與(yu)(yu)物聯網(wang)、大(da)數據(ju)、VR、AR等(deng)(deng)新(xin)型技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)相結(jie)合(he)的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)課(ke)(ke)(ke)題(ti),提(ti)高(gao)學(xue)生(sheng)(sheng)(sheng)(sheng)的(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)(shi)(shi)踐(jian)(jian)能(neng)(neng)(neng)(neng)力(li)(li)和(he)(he)創新(xin)能(neng)(neng)(neng)(neng)力(li)(li)。此外,現(xian)有(you)(you)(you)的(de)(de)(de)(de)(de)(de)主流BIM平臺均被國外壟斷,亟須發(fa)(fa)現(xian)和(he)(he)培(pei)(pei)養一(yi)(yi)(yi)批專(zhuan)(zhuan)注(zhu)于(yu)軟(ruan)件研(yan)(yan)發(fa)(fa)的(de)(de)(de)(de)(de)(de)學(xue)科交叉(cha)類(lei)(lei)(lei)(lei)學(xue)生(sheng)(sheng)(sheng)(sheng),可(ke)以(yi)通(tong)過(guo)增加平臺研(yan)(yan)發(fa)(fa)類(lei)(lei)(lei)(lei)課(ke)(ke)(ke)題(ti),鍛煉學(xue)生(sheng)(sheng)(sheng)(sheng)的(de)(de)(de)(de)(de)(de)研(yan)(yan)發(fa)(fa)能(neng)(neng)(neng)(neng)力(li)(li),為(wei)其將(jiang)來(lai)的(de)(de)(de)(de)(de)(de)工(gong)(gong)作(zuo)(zuo)(zuo)和(he)(he)繼續深造打下基礎(chu)。3.2加強(qiang)(qiang)校(xiao)(xiao)企合(he)作(zuo)(zuo)(zuo)。BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)無論是(shi)(shi)軟(ruan)件使用(yong)(yong)、平臺研(yan)(yan)發(fa)(fa),還是(shi)(shi)與(yu)(yu)新(xin)技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)創新(xin)應(ying)(ying)(ying)用(yong)(yong),均具有(you)(you)(you)很(hen)(hen)強(qiang)(qiang)的(de)(de)(de)(de)(de)(de)實(shi)(shi)(shi)(shi)(shi)踐(jian)(jian)性(xing)。目(mu)(mu)前(qian),很(hen)(hen)多(duo)(duo)土木建(jian)(jian)(jian)筑類(lei)(lei)(lei)(lei)大(da)型企業(ye)(ye)(ye)(ye)均配(pei)備(bei)了(le)(le)BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)中(zhong)(zhong)心(xin),具有(you)(you)(you)較(jiao)強(qiang)(qiang)的(de)(de)(de)(de)(de)(de)BIM應(ying)(ying)(ying)用(yong)(yong)、產(chan)品和(he)(he)新(xin)技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)研(yan)(yan)發(fa)(fa)能(neng)(neng)(neng)(neng)力(li)(li),而(er)(er)在(zai)國內高(gao)校(xiao)(xiao)中(zhong)(zhong)專(zhuan)(zhuan)職從事BIM教(jiao)學(xue)和(he)(he)科研(yan)(yan)的(de)(de)(de)(de)(de)(de)教(jiao)師(shi)非常(chang)(chang)欠(qian)缺(que)。通(tong)過(guo)校(xiao)(xiao)企合(he)作(zuo)(zuo)(zuo),可(ke)以(yi)彌(mi)補(bu)校(xiao)(xiao)內指導(dao)教(jiao)師(shi)BIM實(shi)(shi)(shi)(shi)(shi)踐(jian)(jian)能(neng)(neng)(neng)(neng)力(li)(li)的(de)(de)(de)(de)(de)(de)不(bu)足(zu)(zu)(zu),促進產(chan)、學(xue)、研(yan)(yan)全面合(he)作(zuo)(zuo)(zuo),充分發(fa)(fa)揮學(xue)校(xiao)(xiao)與(yu)(yu)企業(ye)(ye)(ye)(ye)在(zai)BIM人(ren)(ren)才培(pei)(pei)養過(guo)程(cheng)中(zhong)(zhong)的(de)(de)(de)(de)(de)(de)職能(neng)(neng)(neng)(neng)作(zuo)(zuo)(zuo)用(yong)(yong),實(shi)(shi)(shi)(shi)(shi)現(xian)優(you)勢互補(bu)、資源共(gong)享(xiang),強(qiang)(qiang)化(hua)(hua)實(shi)(shi)(shi)(shi)(shi)踐(jian)(jian)育(yu)人(ren)(ren)環(huan)節(jie),對于(yu)提(ti)高(gao)人(ren)(ren)才培(pei)(pei)養質量具有(you)(you)(you)積極的(de)(de)(de)(de)(de)(de)意義[6]。針對于(yu)此,同(tong)濟(ji)大(da)學(xue)與(yu)(yu)上海建(jian)(jian)(jian)工(gong)(gong)、華東建(jian)(jian)(jian)筑設(she)(she)計(ji)(ji)院等(deng)(deng)單(dan)位已建(jian)(jian)(jian)立了(le)(le)長(chang)期的(de)(de)(de)(de)(de)(de)校(xiao)(xiao)企合(he)作(zuo)(zuo)(zuo)關(guan)系(xi),與(yu)(yu)BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)有(you)(you)(you)關(guan)的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)課(ke)(ke)(ke)題(ti)多(duo)(duo)數來(lai)自于(yu)企業(ye)(ye)(ye)(ye),部分畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)成(cheng)果已直接應(ying)(ying)(ying)用(yong)(yong)于(yu)實(shi)(shi)(shi)(shi)(shi)際工(gong)(gong)程(cheng),取得了(le)(le)較(jiao)好的(de)(de)(de)(de)(de)(de)教(jiao)學(xue)效果。3.3重(zhong)(zhong)構(gou)(gou)(gou)現(xian)有(you)(you)(you)課(ke)(ke)(ke)程(cheng)體(ti)系(xi)。近十年來(lai),雖(sui)(sui)然BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)和(he)(he)軟(ruan)件已有(you)(you)(you)長(chang)足(zu)(zu)(zu)的(de)(de)(de)(de)(de)(de)進步,正向設(she)(she)計(ji)(ji)已開始應(ying)(ying)(ying)用(yong)(yong),但(dan)(dan)(dan)逆向建(jian)(jian)(jian)模仍是(shi)(shi)主流,在(zai)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)中(zhong)(zhong)也(ye)最(zui)為(wei)常(chang)(chang)見,即學(xue)生(sheng)(sheng)(sheng)(sheng)根(gen)據(ju)二維CAD圖(tu)(tu)紙(zhi)創建(jian)(jian)(jian)其建(jian)(jian)(jian)筑、結(jie)構(gou)(gou)(gou)及機(ji)電等(deng)(deng)三(san)維BIM模型。從已有(you)(you)(you)的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)效果看(kan),存在(zai)兩(liang)方面的(de)(de)(de)(de)(de)(de)問題(ti),一(yi)(yi)(yi)是(shi)(shi)許多(duo)(duo)學(xue)生(sheng)(sheng)(sheng)(sheng)的(de)(de)(de)(de)(de)(de)識(shi)圖(tu)(tu)能(neng)(neng)(neng)(neng)力(li)(li)較(jiao)弱,特別是(shi)(shi)機(ji)電圖(tu)(tu)紙(zhi)的(de)(de)(de)(de)(de)(de)識(shi)圖(tu)(tu)能(neng)(neng)(neng)(neng)力(li)(li)非常(chang)(chang)欠(qian)缺(que),需占(zhan)用(yong)(yong)大(da)量的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)時間來(lai)提(ti)高(gao)識(shi)圖(tu)(tu)能(neng)(neng)(neng)(neng)力(li)(li);二是(shi)(shi)學(xue)生(sheng)(sheng)(sheng)(sheng)的(de)(de)(de)(de)(de)(de)BIM軟(ruan)件操(cao)作(zuo)(zuo)(zuo)能(neng)(neng)(neng)(neng)力(li)(li)不(bu)足(zu)(zu)(zu),很(hen)(hen)多(duo)(duo)時間被用(yong)(yong)于(yu)軟(ruan)件學(xue)習中(zhong)(zhong),實(shi)(shi)(shi)(shi)(shi)際的(de)(de)(de)(de)(de)(de)畢(bi)(bi)業(ye)(ye)(ye)(ye)設(she)(she)計(ji)(ji)工(gong)(gong)作(zuo)(zuo)(zuo)時間被大(da)量擠占(zhan)。目(mu)(mu)前(qian),很(hen)(hen)多(duo)(duo)高(gao)校(xiao)(xiao)沒有(you)(you)(you)單(dan)獨設(she)(she)置BIM課(ke)(ke)(ke)程(cheng),或(huo)者(zhe)雖(sui)(sui)然單(dan)獨設(she)(she)置但(dan)(dan)(dan)將(jiang)其作(zuo)(zuo)(zuo)為(wei)選修(xiu)課(ke)(ke)(ke),普及面不(bu)廣(guang)(guang),這就需要我(wo)們對現(xian)有(you)(you)(you)的(de)(de)(de)(de)(de)(de)課(ke)(ke)(ke)程(cheng)設(she)(she)置體(ti)系(xi)進行完善(shan)和(he)(he)重(zhong)(zhong)構(gou)(gou)(gou)。考慮到(dao)BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)應(ying)(ying)(ying)用(yong)(yong)領域非常(chang)(chang)廣(guang)(guang)泛,筆者(zhe)建(jian)(jian)(jian)議將(jiang)BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)教(jiao)學(xue)融入專(zhuan)(zhuan)業(ye)(ye)(ye)(ye)培(pei)(pei)養體(ti)系(xi)中(zhong)(zhong),如:將(jiang)BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)引入工(gong)(gong)程(cheng)制圖(tu)(tu)、房屋建(jian)(jian)(jian)筑學(xue)、鋼(gang)結(jie)構(gou)(gou)(gou)和(he)(he)混凝土結(jie)構(gou)(gou)(gou)設(she)(she)計(ji)(ji)、土木工(gong)(gong)程(cheng)施工(gong)(gong)、工(gong)(gong)程(cheng)項目(mu)(mu)管理等(deng)(deng)多(duo)(duo)門課(ke)(ke)(ke)程(cheng)中(zhong)(zhong),特別在(zai)課(ke)(ke)(ke)程(cheng)設(she)(she)計(ji)(ji)中(zhong)(zhong),將(jiang)其作(zuo)(zuo)(zuo)為(wei)一(yi)(yi)(yi)項必修(xiu)內容。通(tong)過(guo)BIM技(ji)術(shu)(shu)(shu)(shu)(shu)(shu)的(de)(de)(de)(de)(de)(de)三(san)維可(ke)視化(hua)(hua)、虛擬仿真、信息共(gong)享(xiang)等(deng)(deng)功能(neng)(neng)(neng)(neng)實(shi)(shi)(shi)(shi)(shi)現(xian)課(ke)(ke)(ke)程(cheng)體(ti)系(xi)的(de)(de)(de)(de)(de)(de)有(you)(you)(you)機(ji)整合(he)。

BIM技術已被廣泛視為(wei)(wei)(wei)改造建(jian)筑業(ye)(ye)(ye)(ye)這一(yi)傳統產業(ye)(ye)(ye)(ye)的(de)(de)戰略手段,正在(zai)導(dao)致建(jian)筑業(ye)(ye)(ye)(ye)進行一(yi)次史無前例的(de)(de)徹底變革。從高校(xiao)的(de)(de)實踐(jian)課程(cheng)(cheng)教(jiao)學來看,BIM技術相(xiang)(xiang)關課題已成為(wei)(wei)(wei)建(jian)筑學、土木工程(cheng)(cheng)、工程(cheng)(cheng)管理等專業(ye)(ye)(ye)(ye)畢(bi)業(ye)(ye)(ye)(ye)設計(ji)的(de)(de)一(yi)個重(zhong)要(yao)方(fang)向。本文(wen)歸納總(zong)結了(le)與BIM技術相(xiang)(xiang)關的(de)(de)三大畢(bi)業(ye)(ye)(ye)(ye)設計(ji)課題方(fang)向:基礎應用、前沿技術融合和軟件研發,以(yi)同濟(ji)大學為(wei)(wei)(wei)例展示了(le)各方(fang)向的(de)(de)畢(bi)業(ye)(ye)(ye)(ye)設計(ji)案例,最(zui)后(hou)提(ti)出了(le)增加前沿課題數量、加強(qiang)校(xiao)企合作、重(zhong)構現有課程(cheng)(cheng)體系等用于(yu)提(ti)升畢(bi)業(ye)(ye)(ye)(ye)設計(ji)效果的(de)(de)建(jian)議,可(ke)以(yi)為(wei)(wei)(wei)BIM相(xiang)(xiang)關專業(ye)(ye)(ye)(ye)的(de)(de)畢(bi)業(ye)(ye)(ye)(ye)設計(ji)提(ti)供借鑒和參(can)考。

參考文獻:

[1]李東鋒(feng).基于BIM技(ji)術(shu)的建(jian)筑學課程設計研究[J].城市建(jian)筑,2020,17(343):51-52.

[2]許娟,魯子良,侯超平(ping)(ping),等.基于BIM平(ping)(ping)臺的(de)傳統(tong)民居(ju)建筑保(bao)護與(yu)更新教學(xue)實踐研究[J].建筑與(yu)文(wen)化,2019,186:42-43.

[3]白(bai)泉,邊晶(jing)梅,于賀(he).土木工(gong)程專業BIM教(jiao)學改革研究(jiu)與(yu)實踐[J].土木建筑(zhu)工(gong)程信息技術,2017,9(5):90-93.

[4]王婉(wan),李懷健,劉勻.BIM技術在(zai)校企聯合畢(bi)業(ye)設計中的應用和實踐[J].高(gao)等建筑教育,2018,27(6):161-166.

[5]張靜(jing)曉,趙陳影,李慧(hui),等.工(gong)程(cheng)管理(li)專業(ye)BIM畢業(ye)設計學習效果測評[J].實驗技術(shu)與管理(li),2018,35(1):171-176+183.

篇4

(江西(xi)理工大學(xue)經濟管理學(xue)院,江西(xi) 贛州 341000)

摘 要:本論文分(fen)析了(le)BIM的(de)(de)四大特點,探討了(le)BIM的(de)(de)核心理念以及IFC標準與BIM的(de)(de)關系(xi),對(dui)BIM定(ding)義(yi)給出了(le)個人(ren)看法。逐一分(fen)析了(le)BIM在成本控(kong)制方(fang)(fang)面(mian),精(jing)細(xi)化(hua)程(cheng)度(du)不高(gao);在進度(du)方(fang)(fang)面(mian),BIM缺乏深入應用;在質量控(kong)制方(fang)(fang)面(mian),BIM并不能適應現有(you)的(de)(de)管理模式(shi);在協(xie)同管理方(fang)(fang)面(mian),信息傳遞(di)受到各方(fang)(fang)關系(xi)的(de)(de)限制。最后(hou)展望了(le)BIM在工程(cheng)項目管理中的(de)(de)應用前景。

關(guan)鍵(jian)詞 :BIM;工(gong)程項目管理(li)(li);協同管理(li)(li)

 中圖分類號(hao):F273文(wen)獻(xian)標志碼(ma):A文(wen)章編號(hao):1000-8772(2014)28-0177-03

1 前言

AEC行業(ye)設計(ji)理念(nian)從建(jian)筑(zhu)信(xin)(xin)息(xi)單一(yi)化(hua)到信(xin)(xin)息(xi)多元化(hua)、復(fu)雜(za)化(hua),經歷了(le)4個階(jie)段(duan),分別是(shi)二維設計(ji)理念(nian),單一(yi)可視化(hua)三維設計(ji)理念(nian),綜合建(jian)筑(zhu)參數信(xin)(xin)息(xi)的(de)(de)BIM模型,加入時間和(he)成本(ben)估算(suan)的(de)(de)協同工作理念(nian)(5D設計(ji)理念(nian))。[1]協同管(guan)理是(shi)工程項目管(guan)理的(de)(de)最佳管(guan)理模式,是(shi)扁(bian)平化(hua)的(de)(de),減少了(le)溝通的(de)(de)障礙。

2 BIM的定義與特點

BIM我們應該如何理(li)解? BIM是以(yi)信息(xi)技術、工程(cheng)管理(li)理(li)論為(wei)基礎,通過資源共享,實現項目各(ge)階段、多(duo)專業之間協同(tong)工作(zuo)的(de)一(yi)種信息(xi)集成的(de)管理(li)模式。

在(zai)眾多BIM的(de)介紹中(zhong),我將BIM的(de)特(te)征歸(gui)納如下:

(1)信(xin)息的最(zui)大化共(gong)享(xiang),實現項(xiang)目(mu)全(quan)生命周期、各(ge)項(xiang)目(mu)參與(yu)方(fang)的協(xie)(xie)(xie)同工作(zuo)。信(xin)息共(gong)享(xiang)、協(xie)(xie)(xie)同工作(zuo)解決了兩個突出問題即“信(xin)息孤(gu)島(dao)”與(yu)各(ge)方(fang)協(xie)(xie)(xie)調困難。項(xiang)目(mu)參與(yu)各(ge)方(fang)的協(xie)(xie)(xie)同工作(zuo),可以通過圖(tu)1表(biao)示出來

(2)文件整合統一,信(xin)息(xi)都由建(jian)筑模型管理。整個工(gong)程項目(mu)中的所有信(xin)息(xi)都將在建(jian)筑模型中存儲,形(xing)成一個完整的工(gong)程項目(mu)數據庫。

(3)面向對象化(hua)的(de)(de)信息模(mo)型。BIM采用(yong)三維方式來(lai)傳遞信息,利用(yong)IFC標(biao)準確定幾何參數(shu)和約束(shu),完(wan)成面向對象化(hua)的(de)(de)模(mo)型搭建(jian)。在(zai)模(mo)型中(zhong),我們將用(yong)數(shu)字化(hua)對象來(lai)代表建(jian)筑構(gou)件(jian)的(de)(de)基本(ben)元素,在(zai)這(zhe)些建(jian)筑構(gou)件(jian)中(zhong)可以完(wan)全反應出相應的(de)(de)物理屬性和功能特(te)性,同時具有互(hu)動能力。

(4)真實的(de)建筑(zhu)(zhu)元(yuan)素構(gou)件(jian),并且在(zai)(zai)修改中(zhong)可以(yi)不斷優化,達到最(zui)佳性能。在(zai)(zai)BIM建筑(zhu)(zhu)模(mo)型中(zhong)我們可以(yi)直(zhi)觀地獲取建筑(zhu)(zhu)元(yuan)素構(gou)件(jian)的(de)全部信(xin)息,元(yuan)素構(gou)件(jian)中(zhong)包含了諸如(ru)建筑(zhu)(zhu)材料特(te)性(例(li)如(ru)PE管道的(de)拉伸性能、玻璃幕(mu)墻的(de)水(shui)密性能等)、數(shu)量、體(ti)積、價格(ge)以(yi)及特(te)定元(yuan)素的(de)專有值(鋼筋的(de)屈服(fu)強度、混凝土的(de)水(shui)灰比(bi)等)。

BIM建模(mo)(mo)的(de)核心(xin)理(li)念(nian)即參(can)數(shu)化(hua)的(de)思想(xiang)。就傳統(tong)的(de)設(she)計(ji)而言,BIM參(can)數(shu)化(hua)設(she)計(ji)避(bi)免了概念(nian)性建模(mo)(mo)語言,而是對(dui)(dui)構(gou)件(jian)(jian)設(she)置相應的(de)參(can)數(shu),生成所需要的(de)構(gou)件(jian)(jian),并且此構(gou)件(jian)(jian)是智能(neng)化(hua)的(de),當你對(dui)(dui)構(gou)件(jian)(jian)的(de)參(can)數(shu)進(jin)行(xing)調節時(shi),將會驅動構(gou)件(jian)(jian)的(de)形體和性能(neng)改變。參(can)數(shu)化(hua)設(she)計(ji)可以對(dui)(dui)模(mo)(mo)型(xing)進(jin)行(xing)結構(gou)、經(jing)濟、節能(neng)快速(su)統(tong)計(ji)和對(dui)(dui)建造過程、運營、人(ren)流疏散進(jin)行(xing)模(mo)(mo)擬計(ji)算,實現虛擬建造。

3 BIM在項目建造(zao)階段(duan)的應(ying)用(yong)分析

3.1 BIM在成本、資源控(kong)制中的應(ying)用

目前國內(nei)的(de)(de)(de)BIM建造階段軟(ruan)件(jian)(jian)(jian)可以準(zhun)確(que)計算(suan)工(gong)程的(de)(de)(de)定額量(liang),但是對項(xiang)目成本(ben)(ben)的(de)(de)(de)控制并不(bu)是僅僅控制工(gong)程量(liang),目前軟(ruan)件(jian)(jian)(jian)在實(shi)(shi)際損(sun)耗量(liang)方(fang)面還無法準(zhun)確(que)計算(suan),需(xu)要考慮更多(duo)的(de)(de)(de)實(shi)(shi)際因(yin)素(su)。通過軟(ruan)件(jian)(jian)(jian)進行預算(suan)并不(bu)能控制成本(ben)(ben),只有明白資(zi)金流的(de)(de)(de)路徑才能知道如何控制成本(ben)(ben),節約費用(yong)。

BIM 5D軟(ruan)件系(xi)統想要更好的(de)控(kong)制成本,合(he)理安(an)排施(shi)工(gong)(gong)人員的(de)調配、工(gong)(gong)程材料的(de)采購、大型機(ji)械(xie)的(de)進(jin)場等工(gong)(gong)作資(zi)源分配,必須(xu)做(zuo)到自動計(ji)算任意(yi) WBS 節(jie)點(dian)的(de)日、周(zhou)、月(yue)各(ge)項(xiang)施(shi)工(gong)(gong)資(zi)源計(ji)劃用(yong)(yong)量。動態計(ji)算任意(yi) WBS 節(jie)點(dian)任意(yi)時(shi)間(jian)(jian)段內的(de)人力、材料、機(ji)械(xie)資(zi)源對(dui)于計(ji)劃進(jin)度的(de)預算用(yong)(yong)量、對(dui)于實際進(jin)度的(de)預算用(yong)(yong)量以及實際消耗量,并對(dui) 3 項(xiang)用(yong)(yong)量進(jin)行對(dui)比和計(ji)算,才(cai)可以知道(dao)任意(yi)時(shi)間(jian)(jian)段各(ge)項(xiang)工(gong)(gong)作量,可以核算該(gai)時(shi)間(jian)(jian)段的(de)造價,可以更加準確地(di)制定派工(gong)(gong)計(ji)劃和資(zi)金計(ji)劃。

3.2 BIM在進度控(kong)制(zhi)中的應用

將BIM 技術與進度管理相結合是通(tong)過在3D模型中(zhong)加入時間(jian)信息與空間(jian)信息,實(shi)現4D 虛(xu)擬施工,具體步驟如圖(tu)2

目(mu)(mu)前(qian)(qian)的(de)(de)(de)(de)BIM進(jin)(jin)度(du)控制(zhi)軟(ruan)(ruan)件(jian)(jian)(jian)大部分(fen)是(shi)在(zai)按照上(shang)述方(fang)(fang)法(fa)引入(ru)進(jin)(jin)度(du),但是(shi)這樣簡單(dan)應用并(bing)不能(neng)(neng)達到控制(zhi)進(jin)(jin)度(du)目(mu)(mu)的(de)(de)(de)(de),多數(shu)軟(ruan)(ruan)件(jian)(jian)(jian)系(xi)(xi)統(tong)(tong)(tong)都(dou)還是(shi)依靠簡單(dan)的(de)(de)(de)(de)計劃和實(shi)際進(jin)(jin)度(du)橫道(dao)圖進(jin)(jin)行(xing)對比分(fen)析,只能(neng)(neng)反映出當前(qian)(qian)的(de)(de)(de)(de)項目(mu)(mu)進(jin)(jin)展狀況。車謙利用蒙特卡洛(luo)仿真模型(xing)結合navisworks API建立進(jin)(jin)度(du)預警(jing)系(xi)(xi)統(tong)(tong)(tong)軟(ruan)(ruan)件(jian)(jian)(jian),根據既有(you)的(de)(de)(de)(de)項目(mu)(mu)資料,采(cai)用CBR(基于(yu)案例的(de)(de)(de)(de)推理)方(fang)(fang)法(fa)分(fen)析當前(qian)(qian)項目(mu)(mu)存在(zai)的(de)(de)(de)(de)風險,預測(ce)(ce)未(wei)來項目(mu)(mu)進(jin)(jin)展的(de)(de)(de)(de)延(yan)誤(wu)并(bing)提出改進(jin)(jin)方(fang)(fang)法(fa)。[4]但是(shi)目(mu)(mu)前(qian)(qian),在(zai)合理選用預測(ce)(ce)模型(xing)方(fang)(fang)面還沒有(you)統(tong)(tong)(tong)一的(de)(de)(de)(de)認可,清華(hua)大學(xue)開發的(de)(de)(de)(de)4D-GCPSU 2006的(de)(de)(de)(de)系(xi)(xi)統(tong)(tong)(tong)中采(cai)用了BP神經網絡預測(ce)(ce)模型(xing)。[5]在(zai)未(wei)來的(de)(de)(de)(de)BIM進(jin)(jin)度(du)管理方(fang)(fang)面,將會出現(xian)越來越多的(de)(de)(de)(de)根據項目(mu)(mu)進(jin)(jin)行(xing)定(ding)制(zhi)的(de)(de)(de)(de)軟(ruan)(ruan)件(jian)(jian)(jian)系(xi)(xi)統(tong)(tong)(tong)出現(xian).開發合適的(de)(de)(de)(de)BIM項目(mu)(mu)管理軟(ruan)(ruan)件(jian)(jian)(jian)系(xi)(xi)統(tong)(tong)(tong)更有(you)利于(yu)合理制(zhi)定(ding)施工計劃、精確掌握施工進(jin)(jin)度(du),優化使用施工資源以及(ji)科(ke)學(xue)地進(jin)(jin)行(xing)場(chang)地布(bu)置。

3.3 BIM在質量(liang)控制中的應用

BIM并不能直(zhi)接提(ti)高工程的質量(liang),質量(liang)管(guan)(guan)理(li)仍然在于(yu)人的管(guan)(guan)理(li),BIM只能做為(wei)輔助人員管(guan)(guan)理(li)的手(shou)段(duan)(duan),創(chuang)新的、符(fu)合BIM技(ji)術的管(guan)(guan)理(li)模式(shi)、工程項目(mu)承包(bao)模式(shi)才能從(cong)根本提(ti)高項目(mu)質量(liang)。BIM是一個技(ji)術手(shou)段(duan)(duan)更是一個管(guan)(guan)理(li)手(shou)段(duan)(duan)。

目前(qian)的(de)(de)BIM質量(liang)控制(zhi)多是從技(ji)術(shu)手段出(chu)(chu)(chu)發,開發出(chu)(chu)(chu)新的(de)(de)軟件(jian)功能,利(li)用互聯(lian)網(wang)促進工(gong)(gong)程(cheng)(cheng)信息的(de)(de)傳遞,例如魯班的(de)(de)IBan軟件(jian),藍色星(xing)球的(de)(de)BIM公(gong)共平臺等等。BIM技(ji)術(shu)的(de)(de)優勢在(zai)于能夠實現對施(shi)(shi)工(gong)(gong)質量(liang)的(de)(de)事前(qian)控制(zhi)和(he)事中控制(zhi),運用4D施(shi)(shi)工(gong)(gong)模(mo)擬(ni)技(ji)術(shu)可(ke)以(yi)(yi)(yi)實現施(shi)(shi)工(gong)(gong)過(guo)程(cheng)(cheng)的(de)(de)提(ti)前(qian)演示(shi),通過(guo)反(fan)復多次模(mo)擬(ni),能夠查(cha)找出(chu)(chu)(chu)工(gong)(gong)程(cheng)(cheng)項目施(shi)(shi)工(gong)(gong)中存在(zai)的(de)(de)問題,并能及時調(diao)整改善(shan),以(yi)(yi)(yi)解決實際施(shi)(shi)工(gong)(gong)時的(de)(de)問題。在(zai)事后控制(zhi)方面,BIM技(ji)術(shu)可(ke)以(yi)(yi)(yi)將已出(chu)(chu)(chu)現問題的(de)(de)部位標注,采取補救措施(shi)(shi)。BIM技(ji)術(shu)應(ying)用于項目的(de)(de)質量(liang)控制(zhi),可(ke)以(yi)(yi)(yi)提(ti)高工(gong)(gong)程(cheng)(cheng)項目管(guan)理效(xiao)率和(he)管(guan)理質量(liang)。

一味(wei)追求生產(chan)力的(de)提(ti)高(gao)而忽視(shi)生產(chan)關系的(de)改善,無法真正實現(xian)BIM的(de)價(jia)值,相反,現(xian)有的(de)生產(chan)關系將會阻礙BIM的(de)發展(zhan)(zhan)。國(guo)內(nei),上海建工采(cai)(cai)用(yong)了EPC(設計——施(shi)工一體化)的(de)模(mo)式對BIM技術的(de)發展(zhan)(zhan)有著很大(da)幫助作用(yong),同樣國(guo)外廣泛采(cai)(cai)用(yong)的(de)IPD模(mo)式應(ying)通(tong)過改善引(yin)進國(guo)內(nei)。[6]

3.4 BIM實現工(gong)程項目的協同管理

國內(nei)BIM協同(tong)管(guan)(guan)理(li),目(mu)前(qian)還(huan)只限(xian)于(yu)全生命周期(qi)的(de)兩三個(ge)階(jie)段,還(huan)沒有(you)達到從縱(zong)、橫向階(jie)段的(de)全面協同(tong)管(guan)(guan)理(li)。更(geng)多的(de)是團隊(dui)內(nei)部的(de)協同(tong)管(guan)(guan)理(li),藍色星球BIM公(gong)共平(ping)(ping)臺(tai)(tai)的(de)建(jian)(jian)(jian)立將有(you)利于(yu)協同(tong)管(guan)(guan)理(li)的(de)發展(zhan)。目(mu)前(qian)國內(nei)以上海交通大學為首(shou),對基(ji)(ji)于(yu)BIM技(ji)術(shu)建(jian)(jian)(jian)筑(zhu)(zhu)協同(tong)平(ping)(ping)臺(tai)(tai)進行(xing)(xing)了(le)初步研究(jiu),主要內(nei)容為(1)對基(ji)(ji)于(yu) BIM 技(ji)術(shu)建(jian)(jian)(jian)筑(zhu)(zhu)協同(tong)平(ping)(ping)臺(tai)(tai)所應具備的(de)功(gong)能進行(xing)(xing)了(le)詳(xiang)細的(de)分析。(2)對基(ji)(ji)于(yu) BIM 技(ji)術(shu)建(jian)(jian)(jian)筑(zhu)(zhu)協同(tong)平(ping)(ping)臺(tai)(tai)的(de)基(ji)(ji)本(ben)結構(gou)進行(xing)(xing)了(le)設計。(3)對基(ji)(ji)于(yu) BIM 技(ji)術(shu)建(jian)(jian)(jian)筑(zhu)(zhu)協同(tong)平(ping)(ping)臺(tai)(tai)各個(ge)模塊的(de)基(ji)(ji)本(ben)功(gong)能進行(xing)(xing)了(le)簡要介(jie)紹。[7]

目前協同管(guan)理(li)在(zai)軟件(jian)方(fang)面還存在(zai)著數據信息(xi)標準不統一,IFC標準并沒有被所有BIM軟件(jian)商采(cai)用(yong),在(zai)多軟件(jian)數據轉換之(zhi)間還存在(zai)著問(wen)題,或是數據轉換發生丟失(shi)。

由(you)于國內的大部分(fen)工程項目管理模式不是(shi)扁平化的模式,信(xin)息傳(chuan)遞(di)不能暢通無阻,雖然現在的互(hu)聯網能夠促進信(xin)息傳(chuan)遞(di),但是(shi)層級阻礙(ai)仍然會導致協同工作無法進展,各方(fang)轉變思想,突(tu)破(po)傳(chuan)統管理思維(wei)是(shi)很(hen)關鍵的。

參考文獻:

[1] 徐韞璽,王要武,姚(yao) 兵(bing).基于BIM的建設項(xiang)目(mu)IPD協同管理研究.[J].土木工程學報.2011.44(12):138-143.

篇5

【關鍵詞】BIM技(ji)術;城市(shi)軌道交通;工程施工管理(li)

1引言

城(cheng)(cheng)市(shi)(shi)軌道交(jiao)(jiao)通工(gong)(gong)程是一座城(cheng)(cheng)市(shi)(shi)對外連接,對內服務(wu)的(de)重要(yao)工(gong)(gong)程項目,其(qi)工(gong)(gong)程質量、施(shi)工(gong)(gong)工(gong)(gong)期都對整個城(cheng)(cheng)市(shi)(shi)的(de)正常運轉有著(zhu)重要(yao)的(de)影響。面對如此繁重的(de)施(shi)工(gong)(gong)任務(wu),傳(chuan)統的(de)工(gong)(gong)程建(jian)設(she)施(shi)工(gong)(gong)管(guan)理方式(shi)難(nan)以滿(man)足現(xian)代(dai)工(gong)(gong)程施(shi)工(gong)(gong)要(yao)求。因此,科學(xue)合理地(di)采用BIM技術,用數據化方式(shi)進行(xing)管(guan)理,為當代(dai)城(cheng)(cheng)市(shi)(shi)軌道交(jiao)(jiao)通工(gong)(gong)程建(jian)設(she)提供必要(yao)的(de)技術支(zhi)持。

2BIM技術的應用優勢(shi)

BIM技(ji)術(shu)的(de)(de)(de)應(ying)(ying)用(yong)優勢(shi)包括:1)BIM技(ji)術(shu)基于建(jian)(jian)筑信息建(jian)(jian)模,將工(gong)程(cheng)(cheng)(cheng)項目中的(de)(de)(de)數(shu)據信息整合(he)(he),通(tong)過數(shu)字化(hua)的(de)(de)(de)方式構建(jian)(jian)建(jian)(jian)筑模型,為(wei)工(gong)程(cheng)(cheng)(cheng)項目提(ti)供管(guan)理依據。同時將BIM技(ji)術(shu)應(ying)(ying)用(yong)在城(cheng)市(shi)軌道交(jiao)通(tong)工(gong)程(cheng)(cheng)(cheng)中,能有效提(ti)高(gao)工(gong)程(cheng)(cheng)(cheng)建(jian)(jian)設效率,能及(ji)時對(dui)工(gong)程(cheng)(cheng)(cheng)中錯誤信息進行修(xiu)改,進而(er)保(bao)(bao)證工(gong)程(cheng)(cheng)(cheng)建(jian)(jian)設的(de)(de)(de)安(an)全。2)BIM技(ji)術(shu)與城(cheng)市(shi)軌道交(jiao)通(tong)工(gong)程(cheng)(cheng)(cheng)的(de)(de)(de)有效結合(he)(he),既能提(ti)高(gao)工(gong)程(cheng)(cheng)(cheng)信息的(de)(de)(de)準確性,又(you)能提(ti)高(gao)工(gong)程(cheng)(cheng)(cheng)管(guan)理質(zhi)量。尤(you)其是在交(jiao)通(tong)車站(zhan)(zhan)的(de)(de)(de)建(jian)(jian)設中,能保(bao)(bao)證多個車站(zhan)(zhan)同時施工(gong)。

3城(cheng)市軌(gui)道交(jiao)通工(gong)程中的(de)BIM技(ji)術

BIM技術(shu)即建(jian)(jian)筑(zhu)(zhu)信息(xi)(xi)模型,適用于(yu)工(gong)(gong)程(cheng)(cheng)建(jian)(jian)筑(zhu)(zhu)中的一種數據化管理工(gong)(gong)具(ju)。在工(gong)(gong)程(cheng)(cheng)建(jian)(jian)設施(shi)工(gong)(gong)前,通過項目信息(xi)(xi)參數,構筑(zhu)(zhu)三維建(jian)(jian)筑(zhu)(zhu)模型,搭建(jian)(jian)信息(xi)(xi)數據庫,以立體化的方式(shi)預先呈現施(shi)工(gong)(gong)流程(cheng)(cheng)。BIM技術(shu)具(ju)有“可視化、協(xie)調性(xing)、模擬(ni)性(xing)、優化性(xing)和可出圖(tu)性(xing)”[1]五大(da)特點。在現實應用中,BIM技術(shu)通過構建(jian)(jian)三維建(jian)(jian)筑(zhu)(zhu)模型,可以對(dui)工(gong)(gong)程(cheng)(cheng)現場進行合理規劃,以直觀且可預見(jian)的方式(shi),便于(yu)施(shi)工(gong)(gong)人員(yuan)合理分析(xi)建(jian)(jian)筑(zhu)(zhu)現場。

4BIM技術在城市軌道交(jiao)通工(gong)程施工(gong)管理中的實踐

4.1BIM技術(shu)在城市軌道交通工程設計階段(duan)的運(yun)用

在(zai)工(gong)程(cheng)建設(she)(she)前(qian)期,通過可(ke)(ke)(ke)視化(hua)三維(wei)模(mo)擬模(mo)型,在(zai)設(she)(she)計(ji)(ji)(ji)階段發(fa)揮了(le)重要的(de)(de)(de)參考作用(yong)。施(shi)(shi)(shi)工(gong)人員(yuan)通過對施(shi)(shi)(shi)工(gong)現場及周(zhou)邊環境的(de)(de)(de)實地調研,采集(ji)相關數據,運用(yong)BIM技術,可(ke)(ke)(ke)以(yi)(yi)實現施(shi)(shi)(shi)工(gong)現場實地仿真模(mo)擬。施(shi)(shi)(shi)工(gong)人員(yuan)可(ke)(ke)(ke)以(yi)(yi)對整個施(shi)(shi)(shi)工(gong)過程(cheng)進行模(mo)擬,可(ke)(ke)(ke)以(yi)(yi)加強對軌道交通本(ben)身及周(zhou)邊版(ban)塊建設(she)(she)的(de)(de)(de)可(ke)(ke)(ke)控(kong)力度,甚至可(ke)(ke)(ke)以(yi)(yi)對已有(you)的(de)(de)(de)施(shi)(shi)(shi)工(gong)設(she)(she)計(ji)(ji)(ji)進行碰撞檢測,有(you)效(xiao)避免了(le)工(gong)程(cheng)圖紙(zhi)設(she)(she)計(ji)(ji)(ji)中(zhong)出現臨(lin)時添加站點,或者(zhe)更改停(ting)靠(kao)線路設(she)(she)計(ji)(ji)(ji)等嚴重設(she)(she)計(ji)(ji)(ji)問題,有(you)效(xiao)減少了(le)因圖紙(zhi)問題引發(fa)的(de)(de)(de)停(ting)工(gong)和返工(gong)現象,達到提高施(shi)(shi)(shi)工(gong)效(xiao)率的(de)(de)(de)作用(yong)。

4.2BIM技(ji)術在(zai)城(cheng)市軌道(dao)交通工程(cheng)施工階段的運(yun)用

有(you)機(ji)整合BIM三維(wei)模(mo)型、工(gong)(gong)(gong)程(cheng)(cheng)量成本信息、時(shi)間(jian)信息,即(ji)可(ke)(ke)實(shi)現(xian)施(shi)(shi)工(gong)(gong)(gong)過(guo)(guo)程(cheng)(cheng)的(de)5D虛擬(ni)構(gou)造(zao)[2]。在(zai)5D虛擬(ni)構(gou)造(zao)中,可(ke)(ke)以清晰(xi)地展(zhan)現(xian)施(shi)(shi)工(gong)(gong)(gong)計劃、進度、工(gong)(gong)(gong)程(cheng)(cheng)量等內容,通(tong)過(guo)(guo)與實(shi)際施(shi)(shi)工(gong)(gong)(gong)現(xian)場進行比較分析(xi),從而達到優化施(shi)(shi)工(gong)(gong)(gong)流程(cheng)(cheng)的(de)效(xiao)果。在(zai)具(ju)體施(shi)(shi)工(gong)(gong)(gong)階(jie)段,施(shi)(shi)工(gong)(gong)(gong)進度可(ke)(ke)以通(tong)過(guo)(guo)BIM技(ji)術實(shi)現(xian)合理(li)控制。在(zai)構(gou)筑工(gong)(gong)(gong)程(cheng)(cheng)建筑模(mo)型的(de)基礎上,工(gong)(gong)(gong)程(cheng)(cheng)施(shi)(shi)工(gong)(gong)(gong)方(fang)、設(she)計方(fang)、建設(she)方(fang)可(ke)(ke)以在(zai)BIM技(ji)術平臺上實(shi)現(xian)信息全面共享。在(zai)透明化的(de)施(shi)(shi)工(gong)(gong)(gong)信息展(zhan)示下,可(ke)(ke)以對施(shi)(shi)工(gong)(gong)(gong)過(guo)(guo)程(cheng)(cheng)進行有(you)效(xiao)把控。同時(shi),對施(shi)(shi)工(gong)(gong)(gong)順序的(de)合理(li)銜接也有(you)很大幫助(zhu)。BIM技(ji)術可(ke)(ke)以實(shi)現(xian)對施(shi)(shi)工(gong)(gong)(gong)全過(guo)(guo)程(cheng)(cheng)的(de)可(ke)(ke)視化模(mo)擬(ni),在(zai)具(ju)體施(shi)(shi)工(gong)(gong)(gong)階(jie)段,可(ke)(ke)以詳細規(gui)劃每個施(shi)(shi)工(gong)(gong)(gong)步驟,合理(li)規(gui)避工(gong)(gong)(gong)期浪費現(xian)象,實(shi)現(xian)施(shi)(shi)工(gong)(gong)(gong)順序的(de)完美銜接。

4.3BIM技術在城市軌道交(jiao)通工程運維階(jie)段的運用

城市軌道交通工程(cheng)在建設(she)后期需要進(jin)行試運(yun)行和定期維護工作。BIM技術(shu)可以對(dui)設(she)備資(zi)(zi)產(chan)實行綜合管理。通過BIM技術(shu)搭建的(de)模型(xing),可以清晰(xi)展示每個(ge)工程(cheng)步(bu)驟的(de)資(zi)(zi)產(chan)使用狀(zhuang)況,甚至可以打(da)通并(bing)引入互(hu)聯(lian)網相關數據。在設(she)備運(yun)維管理中,BIM技術(shu)可以實現(xian)對(dui)設(she)備安裝、拆除等管理的(de)可視(shi)化記(ji)錄,以便不同的(de)運(yun)維人員進(jin)行記(ji)錄翻看。

5BIM技術未來的發(fa)展(zhan)趨勢

BIM技(ji)(ji)術(shu)是一(yi)種應(ying)用(yong)(yong)在工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)項(xiang)目中的(de)(de)(de)(de)(de)(de)建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)模(mo)型(xing),也是一(yi)項(xiang)數(shu)(shu)(shu)據工(gong)(gong)(gong)具,服務(wu)于(yu)建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)。在建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)全過程(cheng)(cheng)(cheng)(cheng)中應(ying)用(yong)(yong)BIM技(ji)(ji)術(shu),能(neng)(neng)簡(jian)化(hua)(hua)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)施工(gong)(gong)(gong),保(bao)證工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)施工(gong)(gong)(gong)效(xiao)率(lv),以此(ci)來提(ti)高建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)企業(ye)的(de)(de)(de)(de)(de)(de)經濟(ji)效(xiao)益,推動建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)行業(ye)的(de)(de)(de)(de)(de)(de)現代(dai)化(hua)(hua)發(fa)(fa)展(zhan)。由(you)此(ci)來看,BIM技(ji)(ji)術(shu)的(de)(de)(de)(de)(de)(de)未來發(fa)(fa)展(zhan)方式更趨向于(yu)智(zhi)能(neng)(neng)化(hua)(hua)與(yu)(yu)數(shu)(shu)(shu)字化(hua)(hua)。智(zhi)慧城市的(de)(de)(de)(de)(de)(de)建(jian)(jian)(jian)(jian)設與(yu)(yu)軌(gui)(gui)道(dao)(dao)交(jiao)(jiao)通(tong)(tong)項(xiang)目管理(li)(li)存在較大(da)(da)的(de)(de)(de)(de)(de)(de)內在聯系(xi),BIM技(ji)(ji)術(shu)已(yi)經成(cheng)為軌(gui)(gui)道(dao)(dao)交(jiao)(jiao)通(tong)(tong)建(jian)(jian)(jian)(jian)設主要的(de)(de)(de)(de)(de)(de)應(ying)用(yong)(yong)技(ji)(ji)術(shu)。與(yu)(yu)一(yi)般建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)相比,軌(gui)(gui)道(dao)(dao)交(jiao)(jiao)通(tong)(tong)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)風(feng)險性(xing)更大(da)(da),且具有(you)(you)更大(da)(da)的(de)(de)(de)(de)(de)(de)規模(mo),構建(jian)(jian)(jian)(jian)周(zhou)期更長。因(yin)此(ci),在施工(gong)(gong)(gong)時(shi)(shi),難度系(xi)數(shu)(shu)(shu)更大(da)(da)。為促使BIM技(ji)(ji)術(shu)在軌(gui)(gui)道(dao)(dao)交(jiao)(jiao)通(tong)(tong)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)中更好地發(fa)(fa)展(zhan),首先(xian),應(ying)根(gen)據城市軌(gui)(gui)道(dao)(dao)的(de)(de)(de)(de)(de)(de)實際情況,軌(gui)(gui)道(dao)(dao)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)的(de)(de)(de)(de)(de)(de)特點制定BIM技(ji)(ji)術(shu)應(ying)用(yong)(yong)標準(zhun),對(dui)參與(yu)(yu)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)設的(de)(de)(de)(de)(de)(de)人(ren)員開(kai)展(zhan)管理(li)(li),才(cai)能(neng)(neng)保(bao)證工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)設中的(de)(de)(de)(de)(de)(de)數(shu)(shu)(shu)據準(zhun)確(que)(que)。同時(shi)(shi)能(neng)(neng)提(ti)高工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)設效(xiao)率(lv),確(que)(que)保(bao)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)設環節準(zhun)確(que)(que)。其次,根(gen)據建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)行業(ye)的(de)(de)(de)(de)(de)(de)發(fa)(fa)展(zhan)方向開(kai)發(fa)(fa)適(shi)合的(de)(de)(de)(de)(de)(de)軟件(jian)(jian),只有(you)(you)保(bao)證BIM技(ji)(ji)術(shu)有(you)(you)相適(shi)應(ying)的(de)(de)(de)(de)(de)(de)應(ying)用(yong)(yong)軟件(jian)(jian),才(cai)能(neng)(neng)提(ti)高工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)效(xiao)率(lv),增強經濟(ji)效(xiao)益。為此(ci)建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)行業(ye)應(ying)重視BIM技(ji)(ji)術(shu)相適(shi)用(yong)(yong)的(de)(de)(de)(de)(de)(de)軟件(jian)(jian)開(kai)發(fa)(fa)工(gong)(gong)(gong)作,才(cai)能(neng)(neng)有(you)(you)效(xiao)提(ti)高城市軌(gui)(gui)道(dao)(dao)交(jiao)(jiao)通(tong)(tong)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)建(jian)(jian)(jian)(jian)設安全。最后,數(shu)(shu)(shu)據協(xie)同管理(li)(li)平(ping)臺的(de)(de)(de)(de)(de)(de)搭建(jian)(jian)(jian)(jian)。BIM技(ji)(ji)術(shu)基(ji)于(yu)數(shu)(shu)(shu)據信(xin)(xin)息(xi)構建(jian)(jian)(jian)(jian)模(mo)型(xing),只有(you)(you)信(xin)(xin)息(xi)數(shu)(shu)(shu)據之間的(de)(de)(de)(de)(de)(de)相通(tong)(tong)性(xing),才(cai)能(neng)(neng)高效(xiao)率(lv)應(ying)用(yong)(yong)BIM技(ji)(ji)術(shu)構建(jian)(jian)(jian)(jian)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)模(mo)型(xing)。基(ji)于(yu)管理(li)(li)平(ping)臺能(neng)(neng)確(que)(que)保(bao)數(shu)(shu)(shu)據傳(chuan)輸速度加快,施工(gong)(gong)(gong)人(ren)員能(neng)(neng)及時(shi)(shi)將(jiang)數(shu)(shu)(shu)據信(xin)(xin)息(xi)上傳(chuan)或者獲取,對(dui)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)中發(fa)(fa)現的(de)(de)(de)(de)(de)(de)問(wen)題,及時(shi)(shi)上傳(chuan)正確(que)(que)信(xin)(xin)息(xi),獲取更具有(you)(you)準(zhun)確(que)(que)性(xing)的(de)(de)(de)(de)(de)(de)建(jian)(jian)(jian)(jian)筑(zhu)(zhu)(zhu)(zhu)模(mo)型(xing),進一(yi)步提(ti)高建(jian)(jian)(jian)(jian)設效(xiao)率(lv)。

6結語

BIM技術(shu)通(tong)過對(dui)城市(shi)軌(gui)道交通(tong)工(gong)(gong)(gong)程(cheng)(cheng)項目建設(she)三維模(mo)擬模(mo)型,實現了(le)對(dui)施工(gong)(gong)(gong)設(she)計、施工(gong)(gong)(gong)過程(cheng)(cheng)以及工(gong)(gong)(gong)程(cheng)(cheng)運維方面的(de)(de)合理管控。可(ke)視化的(de)(de)施工(gong)(gong)(gong)模(mo)型,協(xie)同化的(de)(de)辦公平臺,數(shu)據化的(de)(de)監測管控,推動(dong)了(le)我國城市(shi)軌(gui)道交通(tong)工(gong)(gong)(gong)程(cheng)(cheng)的(de)(de)安全合理建設(she)。

【參考文獻】

篇6

關鍵詞:BIM;建筑工程管理;質量;成本

近(jin)幾年來,人們對(dui)建(jian)筑(zhu)工(gong)程(cheng)的(de)質量(liang)要(yao)求不斷提(ti)高,使得工(gong)程(cheng)建(jian)筑(zhu)的(de)難度(du)也在持續性增加。傳(chuan)統的(de)技術施工(gong)方式(shi)已經不適(shi)合(he)現代化管(guan)理(li)的(de)應用(yong),很(hen)難滿足(zu)建(jian)筑(zhu)業的(de)發展需求。因此,施工(gong)單位要(yao)以(yi)信息技術為基(ji)礎,在施工(gong)管(guan)理(li)、質量(liang)控(kong)制、進(jin)度(du)控(kong)制、成本控(kong)制等方面進(jin)行深化改革,以(yi)促進(jin)建(jian)筑(zhu)行業的(de)發展。

1BIM相關(guan)理論概述

1.1BIM的概念(nian)

BIM技術從出(chu)現(xian)開始,人們對其概念進行(xing)了(le)(le)限定(ding)。從通用化的角度來(lai)(lai)(lai)講,它(ta)是(shi)指以(yi)建(jian)筑(zhu)工(gong)程項目為(wei)目標,通過控(kong)制(zhi)造(zao)(zao)價、提升(sheng)質(zhi)量等途徑來(lai)(lai)(lai)創造(zao)(zao)業主(zhu)滿意的運(yun)營維(wei)護(hu)過程。從承(cheng)包(bao)商的角度來(lai)(lai)(lai)講,它(ta)是(shi)在(zai)施(shi)(shi)工(gong)現(xian)場模擬的情況(kuang)下(xia),按照標準(zhun)的計(ji)劃(hua)方(fang)案(an)對施(shi)(shi)工(gong)現(xian)場進行(xing)跟(gen)蹤(zong),以(yi)實現(xian)施(shi)(shi)工(gong)過程的監(jian)督(du)方(fang)式。從設計(ji)的角度出(chu)發,BIM技術融(rong)入了(le)(le)自動化的監(jian)督(du)系統,能夠按照已知地形(xing)繪(hui)制(zhi)出(chu)具(ju)(ju)體的設計(ji)圖紙。從該技術的發展趨勢與(yu)進程中來(lai)(lai)(lai)看,它(ta)并不是(shi)一(yi)成不變的,系統會根據施(shi)(shi)工(gong)的具(ju)(ju)體要(yao)求與(yu)情況(kuang)進行(xing)升(sheng)級(ji),以(yi)做出(chu)最精準(zhun)的測(ce)量數據。BIM技術最大的優勢為(wei)它(ta)貫穿到了(le)(le)建(jian)筑(zhu)工(gong)程的方(fang)方(fang)面面,從施(shi)(shi)工(gong)進度到質(zhi)量監(jian)督(du)、工(gong)程管(guan)理都有所滲透。即實現(xian)了(le)(le)信息數據的訪問,也(ye)擴展了(le)(le)技術的運(yun)維(wei)空間[1]。

1.2BIM技術的(de)核心(xin)

作為一(yi)項先進(jin)化的(de)建筑工程(cheng)管(guan)(guan)理(li)(li)技術,它的(de)核心控制點在于(yu)以(yi)下(xia)幾個方(fang)面:①它能(neng)夠建立數(shu)據(ju)的(de)三維(wei)分析(xi)平臺。在過程(cheng)控制下(xia)將抽象的(de)圖紙變得更加具體,管(guan)(guan)理(li)(li)者(zhe)(zhe)可以(yi)通過此(ci)方(fang)式(shi)進(jin)行控制;②各(ge)數(shu)據(ju)之(zhi)間(jian)并(bing)不(bu)是獨立存(cun)在的(de),它有(you)著(zhu)一(yi)定的(de)關聯性,能(neng)夠在信息資源(yuan)共(gong)享的(de)同時(shi)深化內(nei)部系統,對模(mo)擬平臺進(jin)行整(zheng)合,實(shi)現數(shu)據(ju)的(de)互交性。不(bu)同專業信息的(de)共(gong)享使得建筑工程(cheng)的(de)參與性加強,管(guan)(guan)理(li)(li)者(zhe)(zhe)可以(yi)實(shi)現建筑現場的(de)遠程(cheng)監控[2];③項目介(jie)入(ru)(ru)速率的(de)晉升。建筑工程(cheng)管(guan)(guan)理(li)(li)者(zhe)(zhe)可隨時(shi)隨地介(jie)入(ru)(ru)到(dao)質量管(guan)(guan)理(li)(li)的(de)內(nei)容決策當中,并(bing)根據(ju)項目效益做出最積極的(de)反(fan)映。

2BIM技術在建筑工程管(guan)理(li)中的應用(yong)

2.1BIM技術(shu)在施工(gong)質量中的應用

材料(liao)和施(shi)工(gong)人(ren)員(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)行(xing)(xing)為是(shi)保證(zheng)質(zhi)量(liang)的(de)(de)(de)(de)(de)(de)(de)(de)重要條件。從施(shi)工(gong)人(ren)員(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)行(xing)(xing)為上(shang)來(lai)講,BIM技術以(yi)三維立(li)體(ti)圖像的(de)(de)(de)(de)(de)(de)(de)(de)形式(shi)將建筑的(de)(de)(de)(de)(de)(de)(de)(de)整體(ti)環(huan)境體(ti)現(xian)(xian)出(chu)(chu)來(lai),并(bing)指(zhi)導施(shi)工(gong)。該技術會根據具(ju)體(ti)的(de)(de)(de)(de)(de)(de)(de)(de)情況建立(li)起(qi)多種方(fang)案,并(bing)對結(jie)(jie)果(guo)進(jin)行(xing)(xing)比對,分析(xi)不(bu)同方(fang)案的(de)(de)(de)(de)(de)(de)(de)(de)缺點和優勢。管(guan)理(li)者依照自(zi)己的(de)(de)(de)(de)(de)(de)(de)(de)判斷選擇一種最適合的(de)(de)(de)(de)(de)(de)(de)(de)方(fang)法(fa)。BIM技術的(de)(de)(de)(de)(de)(de)(de)(de)整合方(fang)式(shi)還體(ti)現(xian)(xian)在(zai)(zai)現(xian)(xian)場(chang)的(de)(de)(de)(de)(de)(de)(de)(de)操作(zuo)中。虛(xu)擬平臺會建立(li)不(bu)同的(de)(de)(de)(de)(de)(de)(de)(de)施(shi)工(gong)順序(xu),通過現(xian)(xian)場(chang)人(ren)員(yuan)效率的(de)(de)(de)(de)(de)(de)(de)(de)測(ce)試實(shi)現(xian)(xian)有效的(de)(de)(de)(de)(de)(de)(de)(de)操控。另外,它具(ju)有可(ke)視化(hua)(hua)模擬導向的(de)(de)(de)(de)(de)(de)(de)(de)功(gong)能,可(ke)以(yi)利用GPS定位(wei)技術與移(yi)動(dong)通訊技術的(de)(de)(de)(de)(de)(de)(de)(de)結(jie)(jie)合做(zuo)到施(shi)工(gong)范(fan)圍的(de)(de)(de)(de)(de)(de)(de)(de)控制(zhi)[3]。管(guan)理(li)者能夠在(zai)(zai)網(wang)絡上(shang)進(jin)行(xing)(xing)現(xian)(xian)場(chang)監督,并(bing)通過施(shi)工(gong)人(ren)員(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)操作(zuo)流程進(jin)行(xing)(xing)協調(diao),達到提(ti)升質(zhi)量(liang)的(de)(de)(de)(de)(de)(de)(de)(de)目(mu)的(de)(de)(de)(de)(de)(de)(de)(de)。在(zai)(zai)材料(liao)的(de)(de)(de)(de)(de)(de)(de)(de)管(guan)理(li)方(fang)面(mian),BIM技術可(ke)以(yi)利用掃描儀(yi)器對材料(liao)和設備進(jin)行(xing)(xing)管(guan)理(li)。系(xi)統中會自(zi)動(dong)出(chu)(chu)現(xian)(xian)材料(liao)的(de)(de)(de)(de)(de)(de)(de)(de)類型以(yi)及成(cheng)分。如(ru)果(guo)出(chu)(chu)現(xian)(xian)質(zhi)量(liang)不(bu)過關的(de)(de)(de)(de)(de)(de)(de)(de)材料(liao),儀(yi)器會實(shi)施(shi)自(zi)動(dong)化(hua)(hua)預警,并(bing)在(zai)(zai)顯示(shi)燈(deng)中表現(xian)(xian)出(chu)(chu)來(lai)。這(zhe)樣既節省人(ren)力,也提(ti)升施(shi)工(gong)的(de)(de)(de)(de)(de)(de)(de)(de)質(zhi)量(liang)。

2.2BIM技術在施工成(cheng)本中(zhong)的應用(yong)

BIM技(ji)(ji)(ji)(ji)術(shu)(shu)在施工(gong)(gong)(gong)(gong)(gong)管(guan)理(li)中的(de)(de)(de)應用主要(yao)體(ti)(ti)(ti)現(xian)(xian)(xian)(xian)在施工(gong)(gong)(gong)(gong)(gong)成(cheng)(cheng)本(ben)控制(zhi)(zhi)(zhi)方面(mian)。建筑工(gong)(gong)(gong)(gong)(gong)程(cheng)(cheng)的(de)(de)(de)施工(gong)(gong)(gong)(gong)(gong)階段也(ye)(ye)可稱為工(gong)(gong)(gong)(gong)(gong)程(cheng)(cheng)實(shi)體(ti)(ti)(ti)的(de)(de)(de)形成(cheng)(cheng)過(guo)(guo)程(cheng)(cheng)。它(ta)的(de)(de)(de)涉及(ji)方面(mian)非常廣,其(qi)(qi)中包(bao)括人力資源(yuan)管(guan)理(li)、施工(gong)(gong)(gong)(gong)(gong)周期控制(zhi)(zhi)(zhi)及(ji)材(cai)料(liao)設備管(guan)理(li)等(deng)。想(xiang)要(yao)提(ti)升施工(gong)(gong)(gong)(gong)(gong)的(de)(de)(de)質量(liang),就要(yao)從以上(shang)幾個方面(mian)入(ru)手,實(shi)現(xian)(xian)(xian)(xian)計劃(hua)進度的(de)(de)(de)合理(li)編制(zhi)(zhi)(zhi)以及(ji)質量(liang)的(de)(de)(de)提(ti)升工(gong)(gong)(gong)(gong)(gong)作(zuo)(zuo)。從BIM技(ji)(ji)(ji)(ji)術(shu)(shu)三維模(mo)型(xing)(xing)的(de)(de)(de)建立(li)中,數據會以圖像的(de)(de)(de)形式(shi)體(ti)(ti)(ti)現(xian)(xian)(xian)(xian)出(chu)來,并將(jiang)各階段的(de)(de)(de)施工(gong)(gong)(gong)(gong)(gong)組合計劃(hua)以及(ji)進度更直(zhi)觀的(de)(de)(de)表現(xian)(xian)(xian)(xian)出(chu)來。信息技(ji)(ji)(ji)(ji)術(shu)(shu)會對(dui)整體(ti)(ti)(ti)大環境進行(xing)規(gui)(gui)劃(hua),列(lie)至一個詳細的(de)(de)(de)資金與(yu)(yu)(yu)人員數量(liang)的(de)(de)(de)使用清單,管(guan)理(li)者可根(gen)據標(biao)準(zhun)參(can)數與(yu)(yu)(yu)實(shi)際規(gui)(gui)模(mo)進行(xing)對(dui)比,按照其(qi)(qi)中的(de)(de)(de)限(xian)定(ding)額(e)度構建材(cai)料(liao)、聘請人員。這樣就避免了因(yin)與(yu)(yu)(yu)供應商(shang)溝通不及(ji)時而出(chu)現(xian)(xian)(xian)(xian)的(de)(de)(de)施工(gong)(gong)(gong)(gong)(gong)成(cheng)(cheng)本(ben)過(guo)(guo)高問題。該技(ji)(ji)(ji)(ji)術(shu)(shu)還(huan)能(neng)對(dui)現(xian)(xian)(xian)(xian)場環境進行(xing)測試。包(bao)括地(di)址條(tiao)件、供水供電(dian)狀況(kuang)等(deng)等(deng)。如果出(chu)現(xian)(xian)(xian)(xian)了自然(ran)因(yin)素變化的(de)(de)(de)情況(kuang),系統會進行(xing)自動化預警,控制(zhi)(zhi)(zhi)現(xian)(xian)(xian)(xian)場的(de)(de)(de)施工(gong)(gong)(gong)(gong)(gong)進度。這樣既(ji)體(ti)(ti)(ti)現(xian)(xian)(xian)(xian)了建筑模(mo)型(xing)(xing)的(de)(de)(de)建立(li),也(ye)(ye)節省了項目的(de)(de)(de)成(cheng)(cheng)本(ben)。同時成(cheng)(cheng)本(ben)管(guan)理(li)還(huan)體(ti)(ti)(ti)現(xian)(xian)(xian)(xian)在工(gong)(gong)(gong)(gong)(gong)程(cheng)(cheng)量(liang)的(de)(de)(de)減少上(shang)。BIM技(ji)(ji)(ji)(ji)術(shu)(shu)可依照相關程(cheng)(cheng)序規(gui)(gui)劃(hua)施工(gong)(gong)(gong)(gong)(gong)進度,并通過(guo)(guo)工(gong)(gong)(gong)(gong)(gong)程(cheng)(cheng)量(liang)的(de)(de)(de)大小制(zhi)(zhi)(zhi)定(ding)規(gui)(gui)則。如果構件的(de)(de)(de)數量(liang)過(guo)(guo)多,系統會自動扣除(chu),并作(zuo)(zuo)出(chu)成(cheng)(cheng)本(ben)節約的(de)(de)(de)最有效(xiao)設計。

3BIM技術在施(shi)工(gong)進度中的應(ying)用

可將BIM技術應用(yong)到施(shi)(shi)工(gong)前、施(shi)(shi)工(gong)中(zhong)與施(shi)(shi)工(gong)后三個階段,貫穿于(yu)整個施(shi)(shi)工(gong)過程中(zhong),使施(shi)(shi)工(gong)進度與施(shi)(shi)工(gong)方案規劃及工(gong)期要求相一致(zhi)。

3.1BIM技術在建筑工程施工前的應(ying)用

可(ke)(ke)(ke)將BIM技(ji)術(shu)用于建筑(zhu)工(gong)(gong)程(cheng)施工(gong)(gong)前的(de)管(guan)理工(gong)(gong)作中。BIM技(ji)術(shu)下,圖紙(zhi)可(ke)(ke)(ke)以(yi)以(yi)三維圖像的(de)形式(shi)顯示(shi),工(gong)(gong)程(cheng)的(de)流(liu)程(cheng)、進度及各(ge)個環節,同樣可(ke)(ke)(ke)以(yi)直觀(guan)的(de)顯示(shi)在(zai)管(guan)理人(ren)員面前。管(guan)理人(ren)員可(ke)(ke)(ke)隨(sui)時(shi)提取上述信(xin)息,將其(qi)與工(gong)(gong)程(cheng)的(de)實際情況相對照,判斷圖紙(zhi)、流(liu)程(cheng)及進度是否與工(gong)(gong)程(cheng)需(xu)求相符合(he)(he),以(yi)此(ci)為施工(gong)(gong)合(he)(he)理性以(yi)及科學(xue)性的(de)提高提供保證。

3.2BIM技術在(zai)建筑工程施工中的應(ying)用(yong)

BIM技術(shu)可(ke)應(ying)用到建(jian)筑(zhu)工(gong)(gong)(gong)程(cheng)施(shi)工(gong)(gong)(gong)過程(cheng)中。建(jian)筑(zhu)工(gong)(gong)(gong)程(cheng)施(shi)工(gong)(gong)(gong)環節復(fu)雜,管(guan)(guan)(guan)理(li)(li)(li)人員可(ke)將BIM技術(shu)下設(she)計的圖紙(zhi)、規劃的施(shi)工(gong)(gong)(gong)流程(cheng)、制定的施(shi)工(gong)(gong)(gong)方案(an)作(zuo)為(wei)參考(kao),指導工(gong)(gong)(gong)程(cheng)各環節順利展開(kai),BIM技術(shu)的應(ying)用,可(ke)使(shi)管(guan)(guan)(guan)理(li)(li)(li)人員從(cong)大(da)局出發,實(shi)現對施(shi)工(gong)(gong)(gong)的全面管(guan)(guan)(guan)理(li)(li)(li),BIM技術(shu)具有(you)可(ke)視(shi)化模擬導向的功能,管(guan)(guan)(guan)理(li)(li)(li)人員可(ke)通過互(hu)聯網進行現場監督,控制施(shi)工(gong)(gong)(gong)操作(zuo)流程(cheng),提高其協調性,這對于管(guan)(guan)(guan)理(li)(li)(li)效率的提高具有(you)積(ji)極(ji)意義。

3.3BIM技(ji)術(shu)在(zai)建筑工程施(shi)工后的(de)應(ying)用

施(shi)工(gong)后,可利用BIM技術,實(shi)現對(dui)施(shi)工(gong)質量的(de)檢驗,以此全面(mian)提高建筑工(gong)程施(shi)工(gong)水平。

4結束語

文(wen)章從BIM技(ji)術(shu)的相關概述出發,分析(xi)了它在建筑工(gong)(gong)(gong)程管理(li)中的應(ying)用。從而得(de)出:作(zuo)為一項先進(jin)(jin)的三維立體信(xin)息技(ji)術(shu)方式(shi),它能貫穿到施工(gong)(gong)(gong)質量(liang)、進(jin)(jin)度、檢(jian)驗(yan)、成本(ben)等各個方面;可為現(xian)場管理(li)提供參考依據,實現(xian)自動(dong)化修改與(yu)管理(li);對施工(gong)(gong)(gong)現(xian)場進(jin)(jin)行指導,在工(gong)(gong)(gong)程質量(liang)保障的基礎上(shang)提升工(gong)(gong)(gong)作(zuo)效率,為項目(mu)成本(ben)的節約與(yu)管理(li)方式(shi)的轉變創造有利條(tiao)件(jian)。

參考文獻:

[1]張樹理.BIM技術在工(gong)程項目全壽命周期成本(ben)管理中的應用[D].長春工(gong)程學院,2016.

[2]劉素琴.BIM技術在(zai)工(gong)程(cheng)變更管理中設計階段的應用研究[D].南昌(chang)大學,2014.

篇7

關(guan)鍵詞:建(jian)(jian)筑信息模型(xing);建(jian)(jian)筑結構;施工圖設計

中圖(tu)分類號:TU3文獻標識碼: A

Abstract: two dimensional CAD technology is the basis of domestic architectural engineering design, 2D drawings are all professional design exchanges information media, the construction drawings for the design results delivery forms. Although with the improvement of CAD technology, design and construction quality has improved, but the prospect is not optimistic: information sharing, to draw and modify the engineering drawing, building model takes more time, BIM technology is used to solve the problem. But because of lack of uniform design method and the application of standard, control is not the necessary software and other factors, the bottleneck of the development of architectural design and the application of BIM technology still exists.Keywords: building information modeling; building structure; construction drawing design

中圖分類號(hao):TU765 文(wen)獻標識(shi)碼:A

一 設計(ji)結構施工圖的要求(qiu)

(一)設計步驟

建(jian)筑(zhu)(zhu)結(jie)(jie)構(gou)(gou)(gou)施工圖(tu)(tu)傳統(tong)的(de)(de)設(she)(she)(she)(she)(she)計(ji)工作模式(shi)是建(jian)立(li)在(zai)(zai)二維圖(tu)(tu)檔(dang)基(ji)礎上進行(xing)(xing)的(de)(de),首先,結(jie)(jie)構(gou)(gou)(gou)模型的(de)(de)分析與(yu)設(she)(she)(she)(she)(she)計(ji)需(xu)要結(jie)(jie)構(gou)(gou)(gou)設(she)(she)(she)(she)(she)計(ji)者以(yi)建(jian)筑(zhu)(zhu)設(she)(she)(she)(she)(she)計(ji)圖(tu)(tu)紙為參(can)考(kao)的(de)(de)前提下進行(xing)(xing),在(zai)(zai)結(jie)(jie)構(gou)(gou)(gou)設(she)(she)(she)(she)(she)計(ji)軟件(jian)上進行(xing)(xing)構(gou)(gou)(gou)件(jian)設(she)(she)(she)(she)(she)計(ji)與(yu)內力(li)分析;建(jian)筑(zhu)(zhu)設(she)(she)(she)(she)(she)計(ji)者收到反饋的(de)(de)結(jie)(jie)構(gou)(gou)(gou)設(she)(she)(she)(she)(she)計(ji)成(cheng)果,做(zuo)建(jian)筑(zhu)(zhu)設(she)(she)(she)(she)(she)計(ji)模型調(diao)整,達成(cheng)設(she)(she)(she)(she)(she)計(ji)要求;結(jie)(jie)構(gou)(gou)(gou)施工圖(tu)(tu)參(can)考(kao)結(jie)(jie)構(gou)(gou)(gou)設(she)(she)(she)(she)(she)計(ji)成(cheng)果繪制。伴隨(sui)CAD技(ji)術的(de)(de)深入應用,在(zai)(zai)構(gou)(gou)(gou)建(jian)分析結(jie)(jie)構(gou)(gou)(gou)模型時,構(gou)(gou)(gou)件(jian)定位、軸網自動(dong)導(dao)入等信息(xi)(xi)已經可依據網層識(shi)別技(ji)術實現(xian),但手工重建(jian)繁多的(de)(de)模型信息(xi)(xi)不可避免;在(zai)(zai)繪制結(jie)(jie)構(gou)(gou)(gou)施工圖(tu)(tu)時,自動(dong)生(sheng)成(cheng)性(xing)能已在(zai)(zai)部分CAD系統(tong)中(zhong)實現(xian),但此類圖(tu)(tu)檔(dang)并不具有聯系性(xing)與(yu)完(wan)整性(xing)以(yi)及信息(xi)(xi)的(de)(de)一致性(xing)等。

在(zai)(zai)BIM模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)基(ji)礎上設(she)(she)(she)(she)(she)計(ji)(ji)結(jie)構(gou)施(shi)(shi)(shi)工(gong)(gong)(gong)圖(tu)(tu)(tu),具有(you)如下優(you)勢:信(xin)息(xi)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)可(ke)在(zai)(zai)工(gong)(gong)(gong)程(cheng)(cheng)設(she)(she)(she)(she)(she)計(ji)(ji)中完(wan)(wan)整性(xing)的(de)(de)存在(zai)(zai),支(zhi)持(chi)自(zi)動(dong)更新、關聯修改圖(tu)(tu)(tu)檔(dang)與模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing),因BIM具有(you)開放(fang)性(xing),自(zi)動(dong)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)信(xin)息(xi)的(de)(de)轉換可(ke)在(zai)(zai)相關軟(ruan)件(jian)中實(shi)現(xian)。BIM建(jian)(jian)筑設(she)(she)(she)(she)(she)計(ji)(ji)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)經(jing)BIM建(jian)(jian)筑設(she)(she)(she)(she)(she)計(ji)(ji)軟(ruan)件(jian)構(gou)建(jian)(jian);導出(chu)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)為IFC文(wen)件(jian),通過BIM模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)的(de)(de)集(ji)成提(ti)取系(xi)統(tong),將結(jie)構(gou)構(gou)建(jian)(jian)信(xin)息(xi)提(ti)取,構(gou)建(jian)(jian)BIM施(shi)(shi)(shi)工(gong)(gong)(gong)圖(tu)(tu)(tu)設(she)(she)(she)(she)(she)計(ji)(ji)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing);另(ling)外(wai),BIM模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)可(ke)實(shi)現(xian)提(ti)取幾(ji)何(he)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing),經(jing)約束、荷(he)載補充定義(yi),分析和(he)設(she)(she)(she)(she)(she)計(ji)(ji)結(jie)構(gou)(建(jian)(jian)筑設(she)(she)(she)(she)(she)計(ji)(ji)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)收到(dao)結(jie)構(gou)設(she)(she)(she)(she)(she)計(ji)(ji)成果(guo)反(fan)饋(kui)信(xin)息(xi),調整模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)),BIM施(shi)(shi)(shi)工(gong)(gong)(gong)圖(tu)(tu)(tu)設(she)(she)(she)(she)(she)計(ji)(ji)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)與設(she)(she)(she)(she)(she)計(ji)(ji)成果(guo)相互集(ji)成,最終得到(dao)BIM結(jie)構(gou)施(shi)(shi)(shi)工(gong)(gong)(gong)圖(tu)(tu)(tu)的(de)(de)完(wan)(wan)整模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing);設(she)(she)(she)(she)(she)計(ji)(ji)和(he)合作(zuo)管(guan)理結(jie)構(gou)施(shi)(shi)(shi)工(gong)(gong)(gong)圖(tu)(tu)(tu)建(jian)(jian)立在(zai)(zai)BIM模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)上,構(gou)建(jian)(jian)BIM施(shi)(shi)(shi)工(gong)(gong)(gong)結(jie)構(gou)圖(tu)(tu)(tu)設(she)(she)(she)(she)(she)計(ji)(ji)模(mo)(mo)(mo)(mo)(mo)(mo)型(xing)(xing)(xing)是(shi)該(gai)設(she)(she)(she)(she)(she)計(ji)(ji)流程(cheng)(cheng)實(shi)現(xian)的(de)(de)關鍵(jian)。

描述模型需求

物(wu)理(li)結構(gou)(gou)(gou)模(mo)(mo)(mo)型(xing)(xing)是建(jian)筑施工圖結構(gou)(gou)(gou)設計的核(he)心,除此(ci)之外(wai),還包含(han)有管理(li)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、關(guan)(guan)聯(lian)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、模(mo)(mo)(mo)型(xing)(xing)屬(shu)性(xing)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)等,節點信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、軸(zhou)網(wang)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、構(gou)(gou)(gou)件(jian)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、約束信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)是物(wu)理(li)結構(gou)(gou)(gou)模(mo)(mo)(mo)型(xing)(xing)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)的組成(cheng);內力信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、荷載信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、設計成(cheng)果信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、材料信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)構(gou)(gou)(gou)成(cheng)屬(shu)性(xing)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi);視圖和(he)模(mo)(mo)(mo)型(xing)(xing)關(guan)(guan)聯(lian)、屬(shu)性(xing)和(he)模(mo)(mo)(mo)型(xing)(xing)關(guan)(guan)聯(lian)、構(gou)(gou)(gou)件(jian)間的關(guan)(guan)聯(lian)構(gou)(gou)(gou)成(cheng)關(guan)(guan)聯(lian)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi);用戶權(quan)限信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、模(mo)(mo)(mo)型(xing)(xing)版本信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)、權(quan)利者(zhe)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)構(gou)(gou)(gou)成(cheng)管理(li)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)(xi)。

二 BIM 在IFC構架中的定義

結構構件含義

描述建(jian)筑結構(gou)(gou)模型(xing)體(ti)系在(zai)IFC標準上(shang)得(de)到(dao)了完整建(jian)立,可對板(ban)、基礎、梁、柱、樓梯、墻等結構(gou)(gou)構(gou)(gou)件做(zuo)描述,建(jian)筑構(gou)(gou)件實(shi)體(ti)派生(sheng)出(chu)上(shang)述結構(gou)(gou)構(gou)(gou)件。建(jian)筑實(shi)體(ti)于IFC模型(xing)中(zhong)首次定(ding)義;樓層和建(jian)筑實(shi)體(ti)的關(guan)聯(lian)(lian)經關(guan)聯(lian)(lian)實(shi)體(ti)集合而來;墻體(ti)模型(xing)是(shi)在(zai)樓層與(yu)墻體(ti)實(shi)體(ti)間(jian)的關(guan)聯(lian)(lian)經空間(jian)結構(gou)(gou)關(guan)聯(lian)(lian)構(gou)(gou)建(jian)定(ding)義。

定義構件屬性

IFC支(zhi)持幾(ji)何(he)、力學性(xing)(xing)能、成(cheng)本、材料等模(mo)型構(gou)件(jian)屬性(xing)(xing),材料構(gou)件(jian)的(de)多層定義(yi)可于IFC模(mo)型實(shi)現(xian),比(bi)如下(xia)圖為(wei)墻(qiang)體(ti)(ti)材料定義(yi),隔熱層、內(nei)墻(qiang)面磚(zhuan)、結構(gou)岑谷外墻(qiang)面磚(zhuan)構(gou)成(cheng)墻(qiang)體(ti)(ti)。材料屬性(xing)(xing)經材料實(shi)體(ti)(ti)定義(yi),層材料模(mo)型經材料層集(ji)合(he)與使用(yong)、材料分(fen)層實(shi)體(ti)(ti)實(shi)現(xian)定義(yi),墻(qiang)體(ti)(ti)與其材料關(guan)聯(lian)也經材料關(guan)聯(lian)實(shi)體(ti)(ti)得(de)到建構(gou)。

(三(san))定義關聯(lian)關系

將兩關(guan)聯實(shi)(shi)體(ti)(ti)(ti)分為(wei)主從(cong)關(guan)系(xi),修改主實(shi)(shi)體(ti)(ti)(ti)則(ze)從(cong)實(shi)(shi)體(ti)(ti)(ti)發(fa)生改變(bian)(bian),但改變(bian)(bian)從(cong)實(shi)(shi)體(ti)(ti)(ti)時主實(shi)(shi)體(ti)(ti)(ti)不會變(bian)(bian)被(bei)稱為(wei)非對稱性關(guan)聯。比如墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti)與(yu)洞口(kou),刪除(chu)墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti),洞口(kou)也被(bei)刪除(chu);刪除(chu)洞口(kou),墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti)依然存在(zai),僅是洞口(kou)與(yu)墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti)間關(guan)聯斷開。下圖為(wei)洞口(kou)與(yu)墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti)間的關(guan)聯關(guan)系(xi),多個洞口(kou)可與(yu)墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti)發(fa)生關(guan)聯,但單(dan)個洞口(kou)只與(yu)一段墻(qiang)(qiang)(qiang)(qiang)體(ti)(ti)(ti)關(guan)聯。

對(dui)(dui)等(deng)關(guan)(guan)(guan)系的(de)(de)兩(liang)關(guan)(guan)(guan)聯(lian)實(shi)(shi)體若改變任何一方實(shi)(shi)體都(dou)會引起(qi)關(guan)(guan)(guan)聯(lian)對(dui)(dui)方的(de)(de)變化,被稱為對(dui)(dui)稱關(guan)(guan)(guan)聯(lian)。比(bi)如柱(zhu)與梁(liang)間(jian)關(guan)(guan)(guan)聯(lian),經(jing)構件節(jie)點構建(jian)柱(zhu)實(shi)(shi)體與梁(liang)實(shi)(shi)體間(jian)的(de)(de)關(guan)(guan)(guan)聯(lian),若梁(liang)端位置變化,經(jing)實(shi)(shi)體關(guan)(guan)(guan)聯(lian),柱(zhu)也隨之更新實(shi)(shi)體,出現修(xiu)改柱(zhu)的(de)(de)關(guan)(guan)(guan)聯(lian);若修(xiu)改柱(zhu),關(guan)(guan)(guan)聯(lian)梁(liang)也會變動(dong)。

實現IFC數(shu)據自定義

屬性(xing)(xing)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)、實(shi)體(ti)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)、基(ji)于(yu)Ifc-Proxy實(shi)體(ti)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)是IFC的(de)主要擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)方式。實(shi)體(ti)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)具(ju)高(gao)運行效率但識別模(mo)型(xing)軟件不易(yi),該方式適用(yong)于(yu)升級(ji)IFC標準版本;基(ji)于(yu)IfcProxy實(shi)體(ti)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)具(ju)靈(ling)活性(xing)(xing)強特性(xing)(xing),但效率低,可擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)模(mo)型(xing)信(xin)息(xi)數量少;屬性(xing)(xing)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)可擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan)模(mo)型(xing)多、靈(ling)活性(xing)(xing)強。下面分析墻體(ti)的(de)屬性(xing)(xing)擴(kuo)(kuo)展(zhan)(zhan)(zhan)(zhan),縱筋信(xin)息(xi)、墻體(ti)體(ti)積、鋼筋等級(ji)、箍筋信(xin)息(xi)、混凝土(tu)標號是墻體(ti)的(de)屬性(xing)(xing)集,墻體(ti)與其類(lei)型(xing)實(shi)體(ti)關(guan)(guan)聯(lian)(lian)經類(lei)型(xing)關(guan)(guan)聯(lian)(lian)實(shi)體(ti)構建(jian),墻體(ti)與其結構設(she)計(ji)屬性(xing)(xing)集關(guan)(guan)聯(lian)(lian)經墻體(ti)類(lei)型(xing)實(shi)體(ti)構建(jian)。

三 設(she)計BIM模型(xing)和系統實(shi)現

(一)設計(ji)BIM模型

根據IFC標(biao)準模(mo)型(xing)具有(you)的(de)(de)邏(luo)輯(ji)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou),根據方(fang)便性與(yu)運行效率的(de)(de)要求,BIM的(de)(de)組織結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)模(mo)型(xing)根據IFC簡化模(mo)型(xing)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)建(jian)(jian),間距高效性與(yu)IFC模(mo)型(xing)文件(jian)(jian)的(de)(de)導出(chu)。BIM模(mo)型(xing)主(zhu)要的(de)(de)機(ji)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)邏(luo)輯(ji)包括材(cai)料(liao)信息模(mo)型(xing)、計(ji)算(suan)(suan)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)模(mo)型(xing)、屬性定義模(mo)型(xing)與(yu)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)模(mo)型(xing),面對象結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)為(wei)主(zhu)要的(de)(de)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)模(mo)型(xing),建(jian)(jian)筑構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)類派(pai)生其結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)(墻(qiang)、柱、梁與(yu)板(ban)等)。結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)關聯構(gou)(gou)(gou)(gou)(gou)(gou)(gou)建(jian)(jian)經(jing)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)關聯類建(jian)(jian)立。結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)設計(ji)結(jie)(jie)(jie)(jie)(jie)果與(yu)機(ji)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)內力分析結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)為(wei)計(ji)算(suan)(suan)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)模(mo)型(xing),經(jing)計(ji)算(suan)(suan)結(jie)(jie)(jie)(jie)(jie)果類與(yu)建(jian)(jian)筑構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)類間耦合,構(gou)(gou)(gou)(gou)(gou)(gou)(gou)建(jian)(jian)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)與(yu)計(ji)算(suan)(suan)結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)關聯,鋼筋(jin)材(cai)料(liao)與(yu)混凝(ning)土(tu)材(cai)料(liao)為(wei)材(cai)料(liao)信息模(mo)型(xing),構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)與(yu)材(cai)料(liao)屬性關聯經(jing)材(cai)料(liao)關聯類構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian),屬性定義模(mo)型(xing)向擴展(zhan)動態BIM模(mo)型(xing)提供路徑,并定義動態結(jie)(jie)(jie)(jie)(jie)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)構(gou)(gou)(gou)(gou)(gou)(gou)(gou)件(jian)(jian)屬性。

系統實現

依據(ju)(ju)(ju)本文(wen)所述,下圖為(wei)結(jie)構(gou)施(shi)工圖BIM設計(ji)(ji)原型(xing)(xing)(xing)系(xi)(xi)統的內在結(jie)構(gou)邏輯圖,包含模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)層(ceng)(ceng)、接口(kou)(kou)層(ceng)(ceng)、數(shu)(shu)據(ju)(ju)(ju)層(ceng)(ceng)、應用(yong)層(ceng)(ceng)。本系(xi)(xi)統經數(shu)(shu)據(ju)(ju)(ju)層(ceng)(ceng)提(ti)供相關數(shu)(shu)據(ju)(ju)(ju),包括圖檔管(guan)理(li)(li)(li)信(xin)(xin)息(xi)(xi)、設計(ji)(ji)規則信(xin)(xin)息(xi)(xi)、BIM模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)信(xin)(xin)息(xi)(xi)、IFC文(wen)件信(xin)(xin)息(xi)(xi)、系(xi)(xi)統信(xin)(xin)息(xi)(xi)等(deng);接口(kou)(kou)層(ceng)(ceng)為(wei)物理(li)(li)(li)數(shu)(shu)據(ju)(ju)(ju)儲存轉(zhuan)化為(wei)BIM模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)提(ti)供了路徑,通過訪問IFC接口(kou)(kou)可提(ti)取BIM模(mo)(mo)(mo)(mo)型(xing)(xing)(xing),并實現(xian)BIM數(shu)(shu)據(ju)(ju)(ju)庫(ku)與(yu)其內存間的映射;作為(wei)系(xi)(xi)統核心,在模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)層(ceng)(ceng)定(ding)義(yi)BIM模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)信(xin)(xin)息(xi)(xi),可對施(shi)工結(jie)構(gou)圖的要求統統滿足;應用(yong)層(ceng)(ceng)可實現(xian)算量統計(ji)(ji)、檢查三(san)維模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)、設計(ji)(ji)管(guan)理(li)(li)(li)圖檔與(yu)模(mo)(mo)(mo)(mo)型(xing)(xing)(xing)、規范校驗設計(ji)(ji)結(jie)果等(deng)功能。

四 應用驗證

以三層(ceng)鋼筋(jin)混凝土(tu)框(kuang)架(jia)結(jie)(jie)構(gou)(gou)作為研究(jiu)對(dui)象,測(ce)試驗證(zheng)BIM系統與(yu)模(mo)(mo)(mo)(mo)(mo)型(xing)(xing),其一,構(gou)(gou)建BIM建筑模(mo)(mo)(mo)(mo)(mo)型(xing)(xing);將Revit模(mo)(mo)(mo)(mo)(mo)型(xing)(xing)導(dao)入Etabs軟(ruan)件(jian)(jian)(jian)得(de)到(dao)Etabs分析模(mo)(mo)(mo)(mo)(mo)型(xing)(xing),對(dui)約束條件(jian)(jian)(jian)與(yu)負載(zai)信(xin)(xin)息補充(chong),分析內(nei)(nei)力(li)與(yu)設(she)計(ji)配筋(jin);將IFC文(wen)件(jian)(jian)(jian)里的模(mo)(mo)(mo)(mo)(mo)型(xing)(xing)構(gou)(gou)件(jian)(jian)(jian)提取得(de)到(dao)BIMSD信(xin)(xin)息構(gou)(gou)件(jian)(jian)(jian)模(mo)(mo)(mo)(mo)(mo)型(xing)(xing);以數據(ju)文(wen)件(jian)(jian)(jian)Access為Etabs軟(ruan)件(jian)(jian)(jian)結(jie)(jie)構(gou)(gou)導(dao)出的設(she)計(ji)成(cheng)果,結(jie)(jie)構(gou)(gou)材料(liao)信(xin)(xin)息、內(nei)(nei)力(li)結(jie)(jie)構(gou)(gou)與(yu)配筋(jin)結(jie)(jie)果在BIMSD模(mo)(mo)(mo)(mo)(mo)型(xing)(xing)結(jie)(jie)構(gou)(gou)中被(bei)接(jie)口導(dao)入讀(du)取,同時關聯構(gou)(gou)件(jian)(jian)(jian)信(xin)(xin)息,得(de)到(dao)BIM結(jie)(jie)構(gou)(gou)施(shi)工(gong)(gong)圖(tu)設(she)計(ji)完整(zheng)模(mo)(mo)(mo)(mo)(mo)型(xing)(xing);三維模(mo)(mo)(mo)(mo)(mo)型(xing)(xing)檢查(cha)、鋼筋(jin)與(yu)結(jie)(jie)構(gou)(gou)混凝土(tu)量統計(ji)、結(jie)(jie)構(gou)(gou)施(shi)工(gong)(gong)圖(tu)設(she)計(ji)等(deng)在BIMSD模(mo)(mo)(mo)(mo)(mo)型(xing)(xing)與(yu)平面整(zheng)體表示法上實現。

五 結語

本(ben)文(wen)通過對建(jian)筑結(jie)(jie)構(gou)(gou)(gou)(gou)施(shi)工(gong)(gong)圖BIM模(mo)型(xing)進(jin)行了(le)設計、流(liu)程以及模(mo)型(xing)描(miao)述做了(le)分析,構(gou)(gou)(gou)(gou)建(jian)了(le)設計模(mo)型(xing),得(de)出鋼筋混凝土框架結(jie)(jie)構(gou)(gou)(gou)(gou)設計系統。在工(gong)(gong)程設計需(xu)(xu)求復雜的當(dang)今,結(jie)(jie)構(gou)(gou)(gou)(gou)施(shi)工(gong)(gong)圖傳(chuan)統設計流(liu)程顯(xian)得(de)落(luo)后,結(jie)(jie)構(gou)(gou)(gou)(gou)施(shi)工(gong)(gong)圖BIM設計為效率瓶(ping)頸突破提供了(le)技術支撐(cheng);施(shi)工(gong)(gong)機構(gou)(gou)(gou)(gou)圖BIM設計應(ying)當(dang)和國(guo)內(nei)建(jian)筑制圖與設計規范相借(jie)鑒,本(ben)文(wen)僅(jin)做了(le)梁、基礎、板層面上(shang)的施(shi)工(gong)(gong)圖平法設計,沒有涉及到復雜構(gou)(gou)(gou)(gou)件與結(jie)(jie)構(gou)(gou)(gou)(gou)體系,這需(xu)(xu)要(yao)后至(zhi)之士努(nu)力研究。

參考文獻:

[1] 劉照球(qiu).基于(yu)IFC標準建筑結構(gou)信息模型研究[D].同(tong)濟大學,2010.

[2] 劉照球,李云貴.建筑結構信息模型(xing)的研究(jiu)[C].//第十四(si)屆全(quan)國工(gong)程設計計算(suan)機應用(yong)學術會(hui)議論文集.2008:219-226.

[3] 王永紅.基(ji)于BIM建筑結構設(she)計模(mo)型集成框架應用開(kai)發[J].商,2013,(10):245.

篇8

隨著(zhu)(zhu)“云(yun)”技術(shu)與物聯(lian)網(wang)進一(yi)步的(de)發展與成(cheng)熟,各種應用(yong)平(ping)臺及各種終(zhong)端使用(yong)數量急速(su)增加(jia),有效(xiao)信(xin)(xin)(xin)息(xi)散落在海量信(xin)(xin)(xin)息(xi)中,專業(ye)用(yong)戶(hu)在互聯(lian)網(wang)中對(dui)(dui)有效(xiao)信(xin)(xin)(xin)息(xi)獲取和處理(li)更加(jia)艱難,反而增加(jia)了設(she)(she)(she)計(ji)管(guan)理(li)成(cheng)本。海量信(xin)(xin)(xin)息(xi)與信(xin)(xin)(xin)息(xi)獲取的(de)不對(dui)(dui)等,產生了更高(gao)的(de)成(cheng)本,而這也制約(yue)著(zhu)(zhu)專業(ye)利用(yong)信(xin)(xin)(xin)息(xi)的(de)效(xiao)率(lv)。成(cheng)熟的(de)同步云(yun)平(ping)臺可以針(zhen)對(dui)(dui)專業(ye)用(yong)戶(hu)對(dui)(dui)信(xin)(xin)(xin)息(xi)需求(qiu)有著(zhu)(zhu)專業(ye)性、高(gao)效(xiao)性特點,通過一(yi)定(ding)的(de)技術(shu)手段(duan)和流程(cheng)模式提(ti)高(gao)廣大設(she)(she)(she)計(ji)人員整體的(de)信(xin)(xin)(xin)息(xi)利用(yong)水(shui)平(ping),為設(she)(she)(she)計(ji)管(guan)理(li)提(ti)供便捷,縮減(jian)設(she)(she)(she)計(ji)管(guan)理(li)成(cheng)本。

【關鍵詞】

設計管理;同步;BIM;云計算;設計協同;移(yi)動互聯;數字信(xin)息;私有云

越(yue)(yue)來越(yue)(yue)多的(de)(de)(de)(de)(de)(de)專(zhuan)業用戶成(cheng)為協(xie)同(tong)平(ping)臺(tai)(tai)的(de)(de)(de)(de)(de)(de)使(shi)(shi)用者,平(ping)臺(tai)(tai)的(de)(de)(de)(de)(de)(de)涌現使(shi)(shi)信(xin)息(xi)(xi)收(shou)集方式與(yu)渠道更加(jia)靈活,各類(lei)信(xin)息(xi)(xi)的(de)(de)(de)(de)(de)(de)獲取(qu)變(bian)得越(yue)(yue)來越(yue)(yue)容(rong)易。另一(yi)(yi)方面不同(tong)云平(ping)臺(tai)(tai)之間(jian)無法(fa)(fa)實(shi)現同(tong)步(bu)(bu)的(de)(de)(de)(de)(de)(de)現狀也使(shi)(shi)得用戶深受(shou)信(xin)息(xi)(xi)分(fen)散的(de)(de)(de)(de)(de)(de)困擾(rao),對(dui)更加(jia)便捷、靈活、有(you)(you)(you)包容(rong)力的(de)(de)(de)(de)(de)(de)云平(ping)臺(tai)(tai)的(de)(de)(de)(de)(de)(de)愈發渴望。基(ji)于(yu)設(she)(she)計(ji)(ji)(ji)管理(li)(li)中(zhong)的(de)(de)(de)(de)(de)(de)同(tong)步(bu)(bu)云平(ping)臺(tai)(tai)研究(jiu)(jiu),將大大提(ti)高有(you)(you)(you)效(xiao)(xiao)信(xin)息(xi)(xi)的(de)(de)(de)(de)(de)(de)收(shou)集與(yu)整(zheng)理(li)(li)效(xiao)(xiao)率(lv),同(tong)時給予使(shi)(shi)用者更加(jia)專(zhuan)業、有(you)(you)(you)針對(dui)性(xing)的(de)(de)(de)(de)(de)(de)信(xin)息(xi)(xi),減少(shao)分(fen)離垃圾信(xin)息(xi)(xi)的(de)(de)(de)(de)(de)(de)精力和時間(jian),從而提(ti)高廣大設(she)(she)計(ji)(ji)(ji)人員整(zheng)體的(de)(de)(de)(de)(de)(de)信(xin)息(xi)(xi)利用水平(ping)。信(xin)息(xi)(xi)時代的(de)(de)(de)(de)(de)(de)背景下(xia)信(xin)息(xi)(xi)的(de)(de)(de)(de)(de)(de)搜集與(yu)整(zheng)理(li)(li)成(cheng)為了(le)建(jian)筑(zhu)設(she)(she)計(ji)(ji)(ji)管理(li)(li)中(zhong)非常(chang)重要的(de)(de)(de)(de)(de)(de)一(yi)(yi)部分(fen),目前市場提(ti)供眾多的(de)(de)(de)(de)(de)(de)云平(ping)臺(tai)(tai)提(ti)供的(de)(de)(de)(de)(de)(de)服務型側重點各有(you)(you)(you)不同(tong)。條(tiao)理(li)(li)化的(de)(de)(de)(de)(de)(de)思路(lu),整(zheng)合應(ying)用對(dui)于(yu)廣大設(she)(she)計(ji)(ji)(ji)人員的(de)(de)(de)(de)(de)(de)日常(chang)使(shi)(shi)用有(you)(you)(you)著重要的(de)(de)(de)(de)(de)(de)意義(yi)。設(she)(she)計(ji)(ji)(ji)管理(li)(li)中(zhong)的(de)(de)(de)(de)(de)(de)同(tong)步(bu)(bu)策略(lve)及“云”應(ying)用的(de)(de)(de)(de)(de)(de)實(shi)現可以減少(shao)信(xin)息(xi)(xi)搜尋成(cheng)本(ben),增加(jia)信(xin)息(xi)(xi)可用性(xing),提(ti)高設(she)(she)計(ji)(ji)(ji)效(xiao)(xiao)率(lv),提(ti)高公司軟實(shi)力。本(ben)文為設(she)(she)計(ji)(ji)(ji)方法(fa)(fa)研究(jiu)(jiu)與(yu)BIM數字管理(li)(li)技術結合的(de)(de)(de)(de)(de)(de)綜合性(xing)研究(jiu)(jiu),目前已基(ji)本(ben)完成(cheng)了(le)相關的(de)(de)(de)(de)(de)(de)研究(jiu)(jiu)構(gou)架(jia)體系。這(zhe)是(shi)一(yi)(yi)個基(ji)于(yu)系統架(jia)構(gou)支(zhi)撐下(xia)的(de)(de)(de)(de)(de)(de)建(jian)筑(zhu)信(xin)息(xi)(xi)化組(zu)織與(yu)運(yun)營策略(lve)研究(jiu)(jiu)。旨在探索BIM設(she)(she)計(ji)(ji)(ji)應(ying)用標準和方法(fa)(fa),重在優化現有(you)(you)(you)設(she)(she)計(ji)(ji)(ji)應(ying)用標準。本(ben)文也是(shi)我們(men)部門設(she)(she)計(ji)(ji)(ji)方法(fa)(fa)研究(jiu)(jiu)的(de)(de)(de)(de)(de)(de)進一(yi)(yi)步(bu)(bu)拓展。

1國內外研究開發(fa)現狀和發(fa)展趨勢

互(hu)聯網(wang)大數(shu)據(ju)時代的(de)(de)(de)到(dao)來(lai),為(wei)(wei)了(le)(le)更好地保(bao)證數(shu)據(ju)安(an)全性(xing)(xing)、完(wan)整性(xing)(xing)及(ji)(ji)方(fang)(fang)便數(shu)據(ju)的(de)(de)(de)異(yi)地管(guan)理(li),云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)的(de)(de)(de)重(zhong)要性(xing)(xing)也日(ri)益(yi)明(ming)顯。“云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)”是由搭載(zai)了(le)(le)云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)服(fu)(fu)務(wu)(wu)(wu)(wu)器(qi)(qi)端(duan)(duan)軟(ruan)件(jian)的(de)(de)(de)云(yun)(yun)(yun)(yun)服(fu)(fu)務(wu)(wu)(wu)(wu)器(qi)(qi)、搭載(zai)了(le)(le)云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)客戶端(duan)(duan)軟(ruan)件(jian)的(de)(de)(de)云(yun)(yun)(yun)(yun)電腦以(yi)(yi)及(ji)(ji)網(wang)絡(luo)組(zu)件(jian)所(suo)(suo)構(gou)成(cheng)的(de)(de)(de)。它允許開(kai)發者們(men)或(huo)是將(jiang)寫好的(de)(de)(de)程序放在(zai)“云(yun)(yun)(yun)(yun)”里(li)運(yun)行(xing),或(huo)是使用(yong)“云(yun)(yun)(yun)(yun)”里(li)提供的(de)(de)(de)服(fu)(fu)務(wu)(wu)(wu)(wu)的(de)(de)(de)平(ping)臺(tai)(tai),是一(yi)(yi)(yi)種基(ji)于(yu)(yu)互(hu)聯網(wang)的(de)(de)(de)計(ji)(ji)算(suan)(suan)方(fang)(fang)式,通(tong)過這種方(fang)(fang)式,共享(xiang)的(de)(de)(de)軟(ruan)硬(ying)件(jian)資源(yuan)和信(xin)息(xi)可以(yi)(yi)按(an)需提供給計(ji)(ji)算(suan)(suan)機(ji)和其他(ta)設(she)(she)備,如(ru)圖1所(suo)(suo)示。“云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)”這個名詞在(zai)2006年由Google正式提出,早在(zai)2002年Amazon就(jiu)已(yi)經出現了(le)(le)云(yun)(yun)(yun)(yun)計(ji)(ji)算(suan)(suan)產品。“云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)”這個概念從互(hu)聯網(wang)誕生(sheng)以(yi)(yi)來(lai)就(jiu)一(yi)(yi)(yi)直存在(zai)。很久以(yi)(yi)前,人們(men)就(jiu)開(kai)始購(gou)買服(fu)(fu)務(wu)(wu)(wu)(wu)器(qi)(qi)存儲(chu)空間(jian),然后把(ba)文件(jian)上傳(chuan)到(dao)服(fu)(fu)務(wu)(wu)(wu)(wu)器(qi)(qi)存儲(chu)空間(jian)里(li)保(bao)存,需要的(de)(de)(de)時候再從服(fu)(fu)務(wu)(wu)(wu)(wu)器(qi)(qi)存儲(chu)空間(jian)里(li)把(ba)文件(jian)下載(zai)下來(lai)。最(zui)簡單的(de)(de)(de)云(yun)(yun)(yun)(yun)計(ji)(ji)算(suan)(suan)技術(shu)在(zai)網(wang)絡(luo)服(fu)(fu)務(wu)(wu)(wu)(wu)中已(yi)經隨處可見并為(wei)(wei)我們(men)所(suo)(suo)熟(shu)知,比如(ru)搜尋引擎、網(wang)絡(luo)信(xin)箱等(deng),使用(yong)者只(zhi)要輸入(ru)簡單指(zhi)令即可獲得到(dao)大量信(xin)息(xi)。”———源(yuan)引百度(du)百科。全球著名市(shi)場咨詢(xun)機(ji)構(gou)國(guo)際數(shu)據(ju)公司(IDC)的(de)(de)(de)《制(zhi)造業視野》(IDCManufacturingInsights)最(zui)新研究報告指(zhi)出:制(zhi)造企業將(jiang)“移動”及(ji)(ji)“云(yun)(yun)(yun)(yun)計(ji)(ji)算(suan)(suan)”列(lie)為(wei)(wei)供應(ying)鏈四(si)大新興技術(shu)中最(zui)重(zhong)要的(de)(de)(de)兩項。目(mu)前國(guo)內的(de)(de)(de)建筑設(she)(she)計(ji)(ji)公司對于(yu)(yu)設(she)(she)計(ji)(ji)管(guan)理(li)方(fang)(fang)向的(de)(de)(de)同(tong)步(bu)云(yun)(yun)(yun)(yun)平(ping)臺(tai)(tai)還處于(yu)(yu)初期實踐階(jie)段(duan),“云(yun)(yun)(yun)(yun)”應(ying)用(yong)管(guan)理(li)主要還是基(ji)于(yu)(yu)局(ju)域網(wang)鄰域的(de)(de)(de)“私有(you)(you)云(yun)(yun)(yun)(yun)”管(guan)理(li)[1],而基(ji)于(yu)(yu)“公有(you)(you)云(yun)(yun)(yun)(yun)”的(de)(de)(de)應(ying)用(yong)主要還限于(yu)(yu)數(shu)據(ju)類的(de)(de)(de)管(guan)理(li)及(ji)(ji)一(yi)(yi)(yi)些市(shi)場通(tong)用(yong)的(de)(de)(de)APP應(ying)用(yong),基(ji)于(yu)(yu)“公有(you)(you)云(yun)(yun)(yun)(yun)”的(de)(de)(de)安(an)全及(ji)(ji)權限管(guan)理(li)等(deng)關(guan)鍵問題仍(reng)需要進一(yi)(yi)(yi)步(bu)加以(yi)(yi)研究。目(mu)前已(yi)有(you)(you)一(yi)(yi)(yi)些設(she)(she)計(ji)(ji)機(ji)構(gou)在(zai)同(tong)步(bu)云(yun)(yun)(yun)(yun)的(de)(de)(de)及(ji)(ji)相(xiang)關(guan)領域已(yi)經取(qu)得了(le)(le)部(bu)分的(de)(de)(de)成(cheng)果,解決(jue)了(le)(le)圖形類的(de)(de)(de)同(tong)步(bu)傳(chuan)輸,以(yi)(yi)及(ji)(ji)基(ji)礎的(de)(de)(de)軟(ruan)件(jian)應(ying)用(yong)[2]。而在(zai)軟(ruan)件(jian)研發領域,基(ji)于(yu)(yu)設(she)(she)計(ji)(ji)全流程的(de)(de)(de)云(yun)(yun)(yun)(yun)端(duan)(duan)應(ying)用(yong)也已(yi)開(kai)展了(le)(le)相(xiang)當(dang)一(yi)(yi)(yi)段(duan)時間(jian)[3](如(ru)圖2),取(qu)得了(le)(le)相(xiang)應(ying)的(de)(de)(de)推進。

2研究項目

2.1研(yan)究(jiu)項目的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)主要(yao)內(nei)容目前我(wo)院(北(bei)京市建筑設計(ji)(ji)研(yan)究(jiu)院第一(yi)(yi)建筑設計(ji)(ji)研(yan)究(jiu)院)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)設計(ji)(ji)管理(li)已基(ji)(ji)本(ben)(ben)完(wan)成(cheng)(cheng)(cheng)了(le)全專業(ye)局(ju)(ju)域(yu)(yu)網(wang)協作(zuo),這一(yi)(yi)方(fang)式(shi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)本(ben)(ben)質核心與“云(yun)”平(ping)(ping)(ping)(ping)臺(tai)(tai)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)核心非常相(xiang)(xiang)(xiang)似(si)[4]:設計(ji)(ji)人員在獲(huo)取(qu)權限之后,可(ke)以(yi)(yi)通(tong)過本(ben)(ben)機(ji)連接到局(ju)(ju)域(yu)(yu)網(wang),從而(er)(er)共享和(he)獲(huo)取(qu)相(xiang)(xiang)(xiang)應(ying)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)。這種(zhong)平(ping)(ping)(ping)(ping)臺(tai)(tai)為(wei)同(tong)專業(ye)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)設計(ji)(ji)人員之間(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)交流和(he)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)共享、各專業(ye)之間(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)配合(he)溝(gou)通(tong)提(ti)供(gong)了(le)一(yi)(yi)種(zhong)可(ke)能(neng)(neng)(neng)性。通(tong)過長時間(jian)(jian)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)實踐證明,這種(zhong)局(ju)(ju)域(yu)(yu)網(wang)平(ping)(ping)(ping)(ping)臺(tai)(tai)為(wei)設計(ji)(ji)人員提(ti)供(gong)了(le)極大的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)便利(li)。而(er)(er)本(ben)(ben)文(wen)所探究(jiu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)同(tong)步(bu)策略以(yi)(yi)及(ji)“云(yun)”平(ping)(ping)(ping)(ping)臺(tai)(tai),在某(mou)種(zhong)程度上可(ke)以(yi)(yi)理(li)解(jie)為(wei)是在局(ju)(ju)域(yu)(yu)網(wang)協同(tong)管理(li)模式(shi)下(xia)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)進一(yi)(yi)步(bu)深化(hua)。已經完(wan)成(cheng)(cheng)(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)《基(ji)(ji)于設計(ji)(ji)院體(ti)系(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)BIM平(ping)(ping)(ping)(ping)臺(tai)(tai)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)研(yan)究(jiu)》[4]、《基(ji)(ji)于協同(tong)與替換模式(shi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)整體(ti)式(shi)BIM》[5]等一(yi)(yi)系(xi)列(lie)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)研(yan)究(jiu)都為(wei)本(ben)(ben)項目打下(xia)了(le)良(liang)好的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)基(ji)(ji)礎(chu)和(he)鋪墊。而(er)(er)從外部環境來(lai)看“云(yun)”平(ping)(ping)(ping)(ping)臺(tai)(tai)作(zuo)為(wei)一(yi)(yi)種(zhong)新型技術已經被越(yue)來(lai)越(yue)多(duo)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)互聯網(wang)平(ping)(ping)(ping)(ping)臺(tai)(tai)所重(zhong)視(shi)。相(xiang)(xiang)(xiang)關(guan)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)(cheng)(cheng)熟的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)“云(yun)”應(ying)用層出不窮,并且(qie)有(you)(you)(you)(you)著進一(yi)(yi)步(bu)整合(he)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)趨勢。當(dang)今信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)污染、信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)饑餓(e)與信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)危機(ji)共存的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)“信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)爆炸”的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)時代,信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)發(fa)生(sheng)源的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)海量化(hua)導致信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)極大冗(rong)余。面對(dui)(dui)雜亂無序(xu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi),要(yao)求創新主體(ti)必須具有(you)(you)(you)(you)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)識(shi)別能(neng)(neng)(neng)力(li)(li)(li),能(neng)(neng)(neng)夠正確分析、判斷(duan)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)質量及(ji)其(qi)利(li)用價(jia)值(zhi),有(you)(you)(you)(you)效(xiao)排除污染,通(tong)過對(dui)(dui)大量而(er)(er)無序(xu)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)進行(xing)精(jing)心篩選、整理(li)和(he)深加(jia)工,發(fa)掘出有(you)(you)(you)(you)價(jia)值(zhi)、可(ke)利(li)用的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)。通(tong)過對(dui)(dui)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)有(you)(you)(you)(you)效(xiao)應(ying)用,提(ti)高(gao)設計(ji)(ji)人員信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)獲(huo)取(qu)能(neng)(neng)(neng)力(li)(li)(li),信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)加(jia)工能(neng)(neng)(neng)力(li)(li)(li)以(yi)(yi)及(ji)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)利(li)用能(neng)(neng)(neng)力(li)(li)(li)與信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)整合(he)應(ying)用能(neng)(neng)(neng)力(li)(li)(li)。信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)整合(he)應(ying)用能(neng)(neng)(neng)力(li)(li)(li)是企業(ye)提(ti)高(gao)效(xiao)率,獲(huo)得客戶,贏取(qu)利(li)潤的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)最重(zhong)要(yao)因素。高(gao)效(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)組織可(ke)以(yi)(yi)帶來(lai)巨大的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)競爭(zheng)優(you)勢,信(xin)(xin)(xin)(xin)息(xi)(xi)(xi)整合(he)能(neng)(neng)(neng)力(li)(li)(li)的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)提(ti)高(gao)可(ke)以(yi)(yi)直接從以(yi)(yi)下(xia)幾個方(fang)面影響(xiang)我(wo)們的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)競爭(zheng):改變(bian)運作(zuo)結構,從而(er)(er)改變(bian)競爭(zheng)規則支持低成(cheng)(cheng)(cheng)本(ben)(ben)以(yi)(yi)及(ji)差(cha)異化(hua)戰略使(shi)我(wo)們有(you)(you)(you)(you)機(ji)會(hui)醞釀全新的(de)(de)(de)(de)(de)(de)(de)(de)(de)(de)業(ye)務。

2.2項目的(de)(de)(de)(de)(de)(de)研(yan)(yan)究(jiu)重點時(shi)(shi)代的(de)(de)(de)(de)(de)(de)飛(fei)速發展(zhan)(zhan),移動互聯(lian)(lian)/物聯(lian)(lian)網領域所發生的(de)(de)(de)(de)(de)(de)進步舉世矚(zhu)目,他們必將會(hui)以(yi)一種(zhong)(zhong)新的(de)(de)(de)(de)(de)(de)形態超(chao)越如今的(de)(de)(de)(de)(de)(de)互聯(lian)(lian)網,在(zai)目前很(hen)多(duo)領域上移動互聯(lian)(lian)網已完成了(le)(le)這(zhe)(zhe)個超(chao)越。人(ren)們在(zai)使(shi)用(yong)各(ge)種(zhong)(zhong)應(ying)用(yong)的(de)(de)(de)(de)(de)(de)時(shi)(shi)間(jian)(jian)邊(bian)界和(he)(he)空間(jian)(jian)邊(bian)界發生了(le)(le)巨(ju)大(da)(da)的(de)(de)(de)(de)(de)(de)變化。本項研(yan)(yan)究(jiu)期待解決非特定產品體(ti)系下(xia)(xia)的(de)(de)(de)(de)(de)(de)云(yun)端應(ying)用(yong)解決方案。重點分析研(yan)(yan)究(jiu)多(duo)用(yong)戶登(deng)陸(lu),并行和(he)(he)交叉作(zuo)(zuo)業,深(shen)入研(yan)(yan)究(jiu)移動互聯(lian)(lian)背景下(xia)(xia)的(de)(de)(de)(de)(de)(de)協(xie)同(tong)機制(zhi),充分利用(yong)已有的(de)(de)(de)(de)(de)(de)“云(yun)計算”和(he)(he)“云(yun)存儲”平臺。把(ba)分散(san)式(shi)分布式(shi)和(he)(he)傳(chuan)統的(de)(de)(de)(de)(de)(de)線性邏輯(ji)結(jie)合(he)起(qi)來(lai),并關(guan)聯(lian)(lian)大(da)(da)數據。此外異地管(guan)理(li),資源協(xie)同(tong)作(zuo)(zuo)業,提高效率,提高準(zhun)確(que)率,使(shi)數據流傳(chuan)和(he)(he)同(tong)步。輕量化,便捷化,降低產品冗余數據及操作(zuo)(zuo),提升普(pu)通(tong)設計人(ren)員的(de)(de)(de)(de)(de)(de)體(ti)驗感也是(shi)我(wo)們研(yan)(yan)究(jiu)的(de)(de)(de)(de)(de)(de)關(guan)注重點。更多(duo)地考(kao)慮我(wo)們每一個設計師的(de)(de)(de)(de)(de)(de)日常(chang)操作(zuo)(zuo)習慣并讓(rang)其得到延(yan)續是(shi)本項目推進的(de)(de)(de)(de)(de)(de)核心。讓(rang)設計師可以(yi)以(yi)更為(wei)熟悉的(de)(de)(de)(de)(de)(de)方式(shi)達成以(yi)往技術所達成不(bu)了(le)(le)的(de)(de)(de)(de)(de)(de)成果,這(zhe)(zhe)是(shi)管(guan)理(li)的(de)(de)(de)(de)(de)(de)目的(de)(de)(de)(de)(de)(de)。我(wo)們期待建立(li)一個良好(hao)的(de)(de)(de)(de)(de)(de)協(xie)同(tong)模式(shi),形成完整(zheng)的(de)(de)(de)(de)(de)(de)生態鏈。而在(zai)后續拓展(zhan)(zhan)上各(ge)種(zhong)(zhong)移動端與未來(lai)的(de)(de)(de)(de)(de)(de)物聯(lian)(lian)網的(de)(de)(de)(de)(de)(de)大(da)(da)趨(qu)勢也會(hui)是(shi)本課題進一步發展(zhan)(zhan)的(de)(de)(de)(de)(de)(de)重要課題。

2.3項(xiang)目(mu)(mu)(mu)的(de)(de)(de)(de)(de)(de)(de)(de)應用前景與展望凱文•凱利(li)是我(wo)(wo)們(men)現在(zai)(zai)(zai)數字化(hua)(hua)(hua)(hua)生(sheng)存的(de)(de)(de)(de)(de)(de)(de)(de)鼻祖,他對未來(lai)(lai)的(de)(de)(de)(de)(de)(de)(de)(de)思辨影(ying)響(xiang)了(le)我(wo)(wo)們(men)這個(ge)時(shi)代。在(zai)(zai)(zai)他著名的(de)(de)(de)(de)(de)(de)(de)(de)預言著作(zuo)《失控》中就(jiu)這樣描(miao)繪我(wo)(wo)們(men)這個(ge)世(shi)界。“印度街道的(de)(de)(de)(de)(de)(de)(de)(de)車(che)水馬龍(long)的(de)(de)(de)(de)(de)(de)(de)(de)畫面始(shi)終復(fu)線在(zai)(zai)(zai)我(wo)(wo)的(de)(de)(de)(de)(de)(de)(de)(de)腦(nao)海(hai),熙熙攘(rang)攘(rang)的(de)(de)(de)(de)(de)(de)(de)(de)人群,佇立(li)不動的(de)(de)(de)(de)(de)(de)(de)(de)牛群,鉆來(lai)(lai)鉆去的(de)(de)(de)(de)(de)(de)(de)(de)自(zi)行車(che),慢慢悠(you)(you)悠(you)(you)的(de)(de)(de)(de)(de)(de)(de)(de)牛車(che),飛(fei)馳而過(guo)的(de)(de)(de)(de)(de)(de)(de)(de)汽(qi)車(che),這些亂七(qi)八糟看上去亂七(qi)八糟的(de)(de)(de)(de)(de)(de)(de)(de)景象,實際上是社會的(de)(de)(de)(de)(de)(de)(de)(de)狀態,也是一種生(sheng)態,看似很亂,有(you)(you)序各個(ge)部分在(zai)(zai)(zai)有(you)(you)序活動,按照自(zi)己的(de)(de)(de)(de)(de)(de)(de)(de)目(mu)(mu)(mu)標和需(xu)要(yao)(yao)的(de)(de)(de)(de)(de)(de)(de)(de)功能(neng)前進。[6]”在(zai)(zai)(zai)我(wo)(wo)們(men)這個(ge)基(ji)于數字生(sheng)存的(de)(de)(de)(de)(de)(de)(de)(de)時(shi)代,最重要(yao)(yao)的(de)(de)(de)(de)(de)(de)(de)(de)理論就(jiu)是去中心(xin)化(hua)(hua)(hua)(hua),我(wo)(wo)們(men)需(xu)要(yao)(yao)用最小(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)規則手段(duan)來(lai)(lai)改變我(wo)(wo)們(men)現有(you)(you)碎片化(hua)(hua)(hua)(hua)的(de)(de)(de)(de)(de)(de)(de)(de)設(she)計生(sheng)產模(mo)式。有(you)(you)效(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)協同可以(yi)將復(fu)雜的(de)(de)(de)(de)(de)(de)(de)(de)項(xiang)目(mu)(mu)(mu)逐級、分項(xiang)拆(chai)分,簡化(hua)(hua)(hua)(hua)。項(xiang)目(mu)(mu)(mu)通(tong)過(guo)協同設(she)計建(jian)立(li)統一的(de)(de)(de)(de)(de)(de)(de)(de)設(she)計標準,在(zai)(zai)(zai)此基(ji)礎(chu)上,所有(you)(you)設(she)計專業(ye)及(ji)人員(yuan)在(zai)(zai)(zai)一個(ge)統一的(de)(de)(de)(de)(de)(de)(de)(de)平(ping)臺上進行設(she)計,從而減(jian)(jian)少(shao)現行各自(zi)由于溝通(tong)不暢或溝通(tong)不及(ji)時(shi)導致(zhi)的(de)(de)(de)(de)(de)(de)(de)(de)錯(cuo)誤。真正實現所有(you)(you)信息(xi)元(yuan)的(de)(de)(de)(de)(de)(de)(de)(de)單一性。同時(shi),協同設(she)計也對設(she)計項(xiang)目(mu)(mu)(mu)的(de)(de)(de)(de)(de)(de)(de)(de)規范化(hua)(hua)(hua)(hua)管理起(qi)到了(le)重要(yao)(yao)作(zuo)用,從而更(geng)快、更(geng)好的(de)(de)(de)(de)(de)(de)(de)(de)完(wan)成工程項(xiang)目(mu)(mu)(mu)。[7]而更(geng)有(you)(you)效(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)同步策略及(ji)云端的(de)(de)(de)(de)(de)(de)(de)(de)整合則是協同模(mo)式最重要(yao)(yao)的(de)(de)(de)(de)(de)(de)(de)(de)依附平(ping)臺與生(sheng)態基(ji)礎(chu),只有(you)(you)通(tong)過(guo)它才(cai)可以(yi)有(you)(you)效(xiao)的(de)(de)(de)(de)(de)(de)(de)(de)減(jian)(jian)少(shao)人為操(cao)作(zuo),最小(xiao)化(hua)(hua)(hua)(hua)個(ge)體的(de)(de)(de)(de)(de)(de)(de)(de)無謂操(cao)作(zuo)。

對于(yu)現(xian)有(you)最流行(xing)的(de)(de)(de)BIM其(qi)關(guan)鍵技術是(shi)數(shu)(shu)(shu)據(ju)而不(bu)(bu)是(shi)模型,研究(jiu)基(ji)于(yu)云(yun)平臺的(de)(de)(de)協同設(she)計(ji)(ji)是(shi)未(wei)來(lai)(lai)設(she)計(ji)(ji)的(de)(de)(de)必然趨(qu)(qu)勢。合理的(de)(de)(de)“云(yun)”技術應(ying)用有(you)利(li)于(yu)我(wo)們(men)(men)更(geng)有(you)效地(di)整(zheng)(zheng)合數(shu)(shu)(shu)據(ju)資源(yuan)。傳統(tong)的(de)(de)(de)辦(ban)公(gong)場景當中,從(cong)硬(ying)(ying)件(jian)來(lai)(lai)看,臺式(shi)機、筆(bi)記本、打(da)印(yin)機、投影儀(yi)、USB等等無數(shu)(shu)(shu)的(de)(de)(de)硬(ying)(ying)件(jian)設(she)備(bei)(bei)之間的(de)(de)(de)交互(hu),數(shu)(shu)(shu)據(ju)的(de)(de)(de)交換,今(jin)天(tian)都(dou)可(ke)以(yi)通(tong)(tong)過有(you)線或(huo)無線的(de)(de)(de)方式(shi)加(jia)(jia)以(yi)實(shi)現(xian)。而軟(ruan)件(jian)層級,Office、郵件(jian)、瀏(liu)覽器(qi)、文檔、包括(kuo)與設(she)計(ji)(ji)相(xiang)關(guan)的(de)(de)(de)各種應(ying)用,如(ru)今(jin)也(ye)在Pad和PC之間完全(quan)可(ke)以(yi)實(shi)現(xian)數(shu)(shu)(shu)據(ju)共享。實(shi)際(ji)上目前(qian)這個(ge)生態已經基(ji)本成(cheng)熟:橫向(xiang)(xiang)連(lian)接辦(ban)公(gong)設(she)備(bei)(bei),讓所有(you)的(de)(de)(de)硬(ying)(ying)件(jian)辦(ban)公(gong)設(she)備(bei)(bei)全(quan)部是(shi)可(ke)連(lian)接的(de)(de)(de)、可(ke)打(da)通(tong)(tong)的(de)(de)(de)。縱(zong)向(xiang)(xiang)互(hu)通(tong)(tong)跨設(she)備(bei)(bei)的(de)(de)(de)不(bu)(bu)同時間節(jie)(jie)點上所產生的(de)(de)(de)各類數(shu)(shu)(shu)據(ju)。橫向(xiang)(xiang)設(she)備(bei)(bei)打(da)通(tong)(tong),縱(zong)向(xiang)(xiang)數(shu)(shu)(shu)據(ju)打(da)通(tong)(tong),只有(you)這樣才可(ke)以(yi)讓協同可(ke)以(yi)真(zhen)正(zheng)的(de)(de)(de)落實(shi),成(cheng)為主流的(de)(de)(de)設(she)計(ji)(ji)方式(shi)[3]。此外從(cong)設(she)計(ji)(ji)的(de)(de)(de)全(quan)生命周期(qi)角度,基(ji)于(yu)“云(yun)”的(de)(de)(de)解決方式(shi)也(ye)可(ke)以(yi)更(geng)好的(de)(de)(de)串聯整(zheng)(zheng)個(ge)設(she)計(ji)(ji)環(huan)節(jie)(jie)的(de)(de)(de)各個(ge)領(ling)域(yu)。信(xin)(xin)息(xi)和數(shu)(shu)(shu)據(ju)也(ye)只有(you)通(tong)(tong)過這樣的(de)(de)(de)方式(shi)才能真(zhen)正(zheng)地(di)流動起來(lai)(lai)。知識與數(shu)(shu)(shu)據(ju)的(de)(de)(de)整(zheng)(zheng)合是(shi)未(wei)來(lai)(lai)的(de)(de)(de)必然趨(qu)(qu)勢,我(wo)們(men)(men)無法(fa)改變。與其(qi)被(bei)動的(de)(de)(de)接受莫不(bu)(bu)如(ru)我(wo)們(men)(men)更(geng)加(jia)(jia)積極地(di)去應(ying)對,相(xiang)信(xin)(xin)我(wo)們(men)(men)的(de)(de)(de)未(wei)來(lai)(lai)會更(geng)美好。

參考文獻

[1]鄧雪原(yuan),蘇(su)昶,孫朋(peng),王(wang)國儉.上(shang)海現代建(jian)筑(zhu)設計(ji)(ji)(集(ji)團)建(jian)筑(zhu)協同設計(ji)(ji)平臺研究(jiu)與(yu)應用[J].土(tu)木建(jian)筑(zhu)工程信息技(ji)術(shu),2010,2(3):96-103.

[2]田(tian)園.智慧(hui)云.科技(ji)改變生活.智慧(hui)互聯.設計創新———北京(jing)土(tu)木(mu)建筑學會2015年(nian)會專題(ti)報告.2015.09

[3]吳(wu)吉(ji)明.從構思到實現———移動平臺上的設計與云(yun)應(ying)用研究[J].土木建(jian)筑(zhu)工程(cheng)信息技術,2013,5(5):11-20.

[4]吳吉明.建(jian)筑信(xin)息(xi)模型系統(BIM)的本土化策略研究(jiu)[J].土木建(jian)筑工程(cheng)信(xin)息(xi)技術,2011,3(3):45-52.

[5]吳吉明,倪琛,張慶利.整(zheng)體式(shi)BIM_基于協(xie)同(tong)與替(ti)換模式(shi)的多平臺(tai)整(zheng)合應用[J].DADA2015數字工廠國際(ji)會議(yi)論文集.20105.07.

[6]凱(kai)(kai)文•凱(kai)(kai)利.失(shi)控:全人類的(de)最終命運和(he)結局/OutofControl:TheNewBiologyofMachines,SocialSystems,&theEconomicWorld.ISBN9787513300711.

篇9

關鍵詞:校(xiao)企合作;工程管(guan)理(li);實踐教學

DOI:10.16640/ki.37-1222/t.2017.01.067

為了適應建筑市場的(de)需(xu)求(qiu),作(zuo)為應用(yong)型(xing)院校需(xu)要(yao)不斷探(tan)索,進行(xing)工程管理專(zhuan)業(ye)(ye)實踐(jian)教(jiao)學(xue)(xue)(xue)改革,以滿足學(xue)(xue)(xue)生(sheng)職業(ye)(ye)勝任能(neng)力的(de)要(yao)求(qiu)。使培養的(de)學(xue)(xue)(xue)生(sheng)既(ji)具(ju)有理論知識(shi),有具(ju)備很(hen)強的(de)動手能(neng)力,很(hen)好的(de)將(jiang)學(xue)(xue)(xue)校所學(xue)(xue)(xue)的(de)專(zhuan)業(ye)(ye)理論知識(shi)與實際工作(zuo)技(ji)能(neng)相(xiang)結合(he),應用(yong)到實際工作(zuo)中(zhong)。實踐(jian)教(jiao)學(xue)(xue)(xue)在工程管理專(zhuan)業(ye)(ye)應用(yong)型(xing)人才培養中(zhong)發揮著著重要(yao)的(de)作(zuo)用(yong),是提高學(xue)(xue)(xue)生(sheng)專(zhuan)業(ye)(ye)素質和綜合(he)能(neng)力的(de)重要(yao)手段和具(ju)體途(tu)徑[1]。

1 目前工程管理專(zhuan)業實(shi)踐教學存(cun)在的問題

(1)實(shi)(shi)(shi)踐(jian)(jian)(jian)教(jiao)(jiao)(jiao)學(xue)所(suo)占(zhan)的教(jiao)(jiao)(jiao)學(xue)學(xue)時(shi)比例比較(jiao)低(di),理(li)(li)論(lun)課(ke)(ke)程(cheng)(cheng)占(zhan)據的比重(zhong)比較(jiao)大,將更(geng)(geng)多地(di)時(shi)間(jian)用于理(li)(li)論(lun)教(jiao)(jiao)(jiao)學(xue),實(shi)(shi)(shi)踐(jian)(jian)(jian)教(jiao)(jiao)(jiao)學(xue)的時(shi)間(jian)得不到(dao)保證,實(shi)(shi)(shi)踐(jian)(jian)(jian)教(jiao)(jiao)(jiao)學(xue)效(xiao)果難(nan)保證。(2)課(ke)(ke)程(cheng)(cheng)設(she)(she)(she)計主(zhu)要是在相對應的理(li)(li)論(lun)課(ke)(ke)程(cheng)(cheng)結束后(hou)進(jin)行的,如(ru)工(gong)(gong)程(cheng)(cheng)制(zhi)圖(tu)對應的CAD制(zhi)圖(tu),招投(tou)標與合同管理(li)(li)對應的招投(tou)標課(ke)(ke)程(cheng)(cheng)設(she)(she)(she)計,土木工(gong)(gong)程(cheng)(cheng)施工(gong)(gong)對應的施工(gong)(gong)組織設(she)(she)(she)計等,都是以單項的基(ji)礎型實(shi)(shi)(shi)踐(jian)(jian)(jian)課(ke)(ke)程(cheng)(cheng)為主(zhu),實(shi)(shi)(shi)踐(jian)(jian)(jian)內容較(jiao)為單一,范圍較(jiao)窄,各(ge)課(ke)(ke)程(cheng)(cheng)相互之間(jian)實(shi)(shi)(shi)踐(jian)(jian)(jian)內容相互割裂[2]。(3)教(jiao)(jiao)(jiao)師(shi)很(hen)(hen)多都是從高校畢業(ye)然后(hou)直接再進(jin)入高校工(gong)(gong)作,師(shi)資(zi)隊伍沒有達(da)到(dao)雙師(shi)型,實(shi)(shi)(shi)踐(jian)(jian)(jian)教(jiao)(jiao)(jiao)學(xue)指(zhi)導(dao)教(jiao)(jiao)(jiao)師(shi)缺(que)乏實(shi)(shi)(shi)際工(gong)(gong)作經驗,所(suo)掌握的工(gong)(gong)程(cheng)(cheng)實(shi)(shi)(shi)例比較(jiao)少,而且很(hen)(hen)難(nan)根據行業(ye)發(fa)展(zhan)情況進(jin)行實(shi)(shi)(shi)時(shi)更(geng)(geng)新(xin),學(xue)生與實(shi)(shi)(shi)際工(gong)(gong)程(cheng)(cheng)接觸更(geng)(geng)少,實(shi)(shi)(shi)踐(jian)(jian)(jian)教(jiao)(jiao)(jiao)學(xue)很(hen)(hen)難(nan)達(da)到(dao)預期的效(xiao)果。

2 基(ji)于校企合作的(de)工程(cheng)管理專業實踐(jian)教學改革(ge)具體措施

2.1 構建初、中、高“三級(ji)”平臺

(1)初級平(ping)(ping)臺(tai)(tai)――課(ke)堂實踐(jian)(jian)能力訓(xun)練,將課(ke)內(nei)的(de)(de)專業理(li)(li)論知識(shi)(shi)在實踐(jian)(jian)中(zhong)初步體會,提(ti)(ti)高(gao)掌握(wo)理(li)(li)論知識(shi)(shi)的(de)(de)效(xiao)率,目(mu)(mu)前已經確定房地(di)產(chan)估價等(deng)3門課(ke)程(cheng)進(jin)行理(li)(li)論與實踐(jian)(jian)相結(jie)合(he)的(de)(de)形(xing)式(shi)開(kai)展。(2)中(zhong)級平(ping)(ping)臺(tai)(tai)――校內(nei)實踐(jian)(jian)能力訓(xun)練,有(you)效(xiao)利用(yong)教學儀器設備,充分應用(yong)廣聯達軟件和斯維(wei)爾軟件,開(kai)展工(gong)程(cheng)造價軟件級應用(yong)實踐(jian)(jian)課(ke)程(cheng),提(ti)(ti)高(gao)學生實踐(jian)(jian)能力。(3)高(gao)級平(ping)(ping)臺(tai)(tai)――校外(wai)實踐(jian)(jian)能力訓(xun)練,新建(jian)煙(yan)臺(tai)(tai)市第一監理(li)(li)有(you)限公(gong)司實習基地(di),對于應對目(mu)(mu)前建(jian)筑業行業整體萎靡形(xing)勢造成的(de)(de)實習基地(di)緊張狀(zhuang)況,開(kai)放式(shi)的(de)(de)教學實現了工(gong)地(di)技術管理(li)(li)人員(yuan)講解(jie)(jie)工(gong)程(cheng)管理(li)(li)技術,指導教師輔助講解(jie)(jie)并共同答疑,提(ti)(ti)高(gao)了實踐(jian)(jian)教學的(de)(de)效(xiao)果(guo)。

2.2 創建實踐(jian)教學體系并加強管理

由(you)開放式(shi)實(shi)(shi)踐(jian)教學(xue)(xue)模式(shi)的(de)(de)(de)(de)研(yan)究(jiu)與實(shi)(shi)踐(jian)、實(shi)(shi)驗室(shi)教學(xue)(xue)管(guan)(guan)理(li)、實(shi)(shi)習基地建(jian)立、學(xue)(xue)術講座、課程(cheng)設(she)(she)(she)(she)計(ji)(ji)(ji)、畢(bi)業(ye)設(she)(she)(she)(she)計(ji)(ji)(ji)(論(lun)文)六個模塊構(gou)成(cheng)的(de)(de)(de)(de)實(shi)(shi)踐(jian)教學(xue)(xue)體系。(1)選(xuan)取有代表性的(de)(de)(de)(de)案(an)例(li)(li),結構(gou)不(bu)是(shi)特別(bie)復雜的(de)(de)(de)(de)別(bie)墅項(xiang)目(mu),一(yi)個案(an)例(li)(li)貫(guan)穿所有課程(cheng)設(she)(she)(she)(she)計(ji)(ji)(ji),2015級(ji)的(de)(de)(de)(de)CAD制圖課程(cheng)設(she)(she)(she)(she)計(ji)(ji)(ji)已(yi)經(jing)率先采(cai)用統一(yi)案(an)例(li)(li),從(cong)基本(ben)繪(hui)圖、識圖開始打基礎,為后續(xu)課程(cheng)設(she)(she)(she)(she)計(ji)(ji)(ji)的(de)(de)(de)(de)開設(she)(she)(she)(she)做好準備。(2)加強課程(cheng)建(jian)設(she)(she)(she)(she)與改革(ge),優化實(shi)(shi)踐(jian)教學(xue)(xue)比例(li)(li),2014級(ji)開始工程(cheng)管(guan)(guan)理(li)專業(ye)人才(cai)培(pei)養方案(an)中(zhong)實(shi)(shi)踐(jian)教學(xue)(xue)比例(li)(li)已(yi)經(jing)達到40%以上,更(geng)加有利于應(ying)用型人才(cai)的(de)(de)(de)(de)培(pei)養。(3)校(xiao)企合作進行畢(bi)業(ye)設(she)(she)(she)(she)計(ji)(ji)(ji),校(xiao)外專業(ye)教師(shi)(shi)(shi)指(zhi)導畢(bi)業(ye)設(she)(she)(she)(she)計(ji)(ji)(ji)內容,校(xiao)內教師(shi)(shi)(shi)進行畢(bi)業(ye)設(she)(she)(she)(she)計(ji)(ji)(ji)管(guan)(guan)理(li)和(he)格式(shi)審查及(ji)資料提交(jiao),目(mu)前已(yi)經(jing)開展,2015屆部分同學(xue)(xue)畢(bi)業(ye)生畢(bi)業(ye)設(she)(she)(she)(she)計(ji)(ji)(ji)采(cai)用雙(shuang)導師(shi)(shi)(shi)制,學(xue)(xue)生在(zai)校(xiao)外實(shi)(shi)習并在(zai)校(xiao)外指(zhi)導老師(shi)(shi)(shi)的(de)(de)(de)(de)指(zhi)導下(xia)完成(cheng)畢(bi)業(ye)設(she)(she)(she)(she)計(ji)(ji)(ji),設(she)(she)(she)(she)計(ji)(ji)(ji)成(cheng)果符合實(shi)(shi)際(ji),有很好應(ying)用價值,效果非常好。

2.3 工程管理專業實(shi)踐(jian)教學師資隊(dui)伍建設研(yan)究

構建“學(xue)術(shu)研究與(yu)工程(cheng)(cheng)實(shi)(shi)(shi)踐并重(zhong)”的(de)(de)師(shi)資隊伍(wu)。實(shi)(shi)(shi)踐教(jiao)師(shi)是學(xue)院教(jiao)師(shi)隊伍(wu)的(de)(de)重(zhong)要(yao)組成部分(fen),主要(yao)包括(kuo):擔任各實(shi)(shi)(shi)踐教(jiao)學(xue)管(guan)理教(jiao)師(shi)、指導實(shi)(shi)(shi)踐教(jiao)學(xue)的(de)(de)教(jiao)師(shi)。目前(qian)主要(yao)基于校(xiao)企合作形式(shi),學(xue)院內(nei)聘教(jiao)師(shi)和企業專家(jia)工程(cheng)(cheng)組成實(shi)(shi)(shi)踐教(jiao)學(xue)指導教(jiao)師(shi),企業專家(jia)更多的(de)(de)進行(xing)專業實(shi)(shi)(shi)踐技(ji)術(shu)的(de)(de)講解和操作,內(nei)聘教(jiao)師(shi)在過程(cheng)(cheng)中學(xue)習更多的(de)(de)實(shi)(shi)(shi)踐技(ji)能并保證實(shi)(shi)(shi)踐課程(cheng)(cheng)的(de)(de)順(shun)利開(kai)展,提高實(shi)(shi)(shi)踐教(jiao)學(xue)的(de)(de)教(jiao)學(xue)效果,保證了實(shi)(shi)(shi)踐教(jiao)學(xue)質量。

2.4 以競(jing)賽(sai)帶動實踐教學

在實踐教(jiao)(jiao)學中(zhong),培養(yang)學生主動(dong)探(tan)索、主動(dong)學習的能力尤為重(zhong)要。通過(guo)參(can)(can)加(jia)專業(ye)競賽(sai)給學生提供了較大(da)的自主學習的時間(jian)和(he)空間(jian),建筑(zhu)工(gong)程系工(gong)程管(guan)理學子(zi)2015年首(shou)次參(can)(can)加(jia)山(shan)東省(sheng)BIM大(da)賽(sai)和(he)全國大(da)賽(sai),在校外指導教(jiao)(jiao)師(shi)和(he)校內指導教(jiao)(jiao)師(shi)的共同努力下(xia),專業(ye)競賽(sai)取得(de)了一些成績并取得(de)了很(hen)好(hao)的經(jing)驗,為以后省(sheng)賽(sai)和(he)國賽(sai)的參(can)(can)加(jia)打下(xia)良好(hao)基礎,學生取得(de)BIM獲獎證(zheng)書,對于就業(ye)很(hen)有幫助。

2.5 教師實(shi)踐教學能力培養

積極組織工(gong)程管理(li)專業教(jiao)師參加培(pei)訓,鑒于近(jin)兩(liang)年來(lai)建筑行(xing)業BIM技術的不斷(duan)發展和(he)應(ying)用,組織專業教(jiao)師參加培(pei)訓,讓教(jiao)師接觸了(le)解最新行(xing)業動態與(yu)技術,不斷(duan)提高自(zi)身水平,將最新的成果應(ying)用于實踐教(jiao)學,讓學生更(geng)好地對(dui)接社會。

3 基于校企合作的工程管理專業實踐教學(xue)改革效果(guo)

從校(xiao)企合(he)作(zuo)的角度(du)出發(fa)進行工程管(guan)理專業實踐(jian)教學改革效果顯著:

(1)通(tong)過(guo)(guo)校企(qi)合作,使(shi)老師(shi)和(he)學(xue)(xue)生都能(neng)(neng)(neng)了解專業(ye)(ye)方面的(de)(de)需(xu)(xu)求(qiu)和(he)最(zui)新技(ji)術,制定出能(neng)(neng)(neng)夠(gou)勝任崗位(wei)能(neng)(neng)(neng)力的(de)(de)符合應用型(xing)人才培養(yang)需(xu)(xu)求(qiu)的(de)(de)人才培養(yang)計劃;(2)通(tong)過(guo)(guo)校企(qi)合作,建(jian)立實(shi)(shi)(shi)習(xi)(xi)基(ji)地(di),讓學(xue)(xue)生能(neng)(neng)(neng)夠(gou)到企(qi)業(ye)(ye)里參觀、學(xue)(xue)習(xi)(xi),為理論知識(shi)的(de)(de)學(xue)(xue)習(xi)(xi)打好(hao)基(ji)礎,并提高學(xue)(xue)生對于理論知識(shi)學(xue)(xue)習(xi)(xi)的(de)(de)興趣,通(tong)過(guo)(guo)采(cai)取“基(ji)地(di)+實(shi)(shi)(shi)習(xi)(xi)+就(jiu)業(ye)(ye)”的(de)(de)實(shi)(shi)(shi)踐教(jiao)學(xue)(xue)模式,通(tong)過(guo)(guo)在(zai)實(shi)(shi)(shi)習(xi)(xi)基(ji)地(di)實(shi)(shi)(shi)習(xi)(xi),表現(xian)(xian)突(tu)出,經(jing)過(guo)(guo)實(shi)(shi)(shi)習(xi)(xi)單位(wei)考(kao)察和(he)系部(bu)推薦(jian),成功(gong)就(jiu)業(ye)(ye),實(shi)(shi)(shi)現(xian)(xian)以實(shi)(shi)(shi)踐促就(jiu)業(ye)(ye);(3)通(tong)過(guo)(guo)校企(qi)合作,實(shi)(shi)(shi)現(xian)(xian)企(qi)業(ye)(ye)家進(jin)課(ke)堂,聘任社會上具有豐富(fu)實(shi)(shi)(shi)踐經(jing)驗的(de)(de)工程師(shi)、技(ji)術負責人參與專業(ye)(ye)課(ke)程教(jiao)學(xue)(xue),將行業(ye)(ye)的(de)(de)最(zui)前沿知識(shi)帶進(jin)課(ke)堂,將先進(jin)的(de)(de)技(ji)術、管(guan)理手段帶進(jin)課(ke)堂,給學(xue)(xue)生提供最(zui)新的(de)(de)專業(ye)(ye)知識(shi)和(he)實(shi)(shi)(shi)踐經(jing)驗,創建(jian)多元師(shi)資(zi)隊伍(wu)。(4)通(tong)過(guo)(guo)校企(qi)合作,使(shi)教(jiao)師(shi)可以到企(qi)業(ye)(ye)學(xue)(xue)習(xi)(xi),增強實(shi)(shi)(shi)踐教(jiao)學(xue)(xue)能(neng)(neng)(neng)力,更(geng)好(hao)的(de)(de)培養(yang)能(neng)(neng)(neng)夠(gou)勝任崗位(wei)能(neng)(neng)(neng)力的(de)(de)應用型(xing)人才。

實(shi)踐教學(xue)(xue)是高(gao)校育(yu)人(ren)(ren)和(he)綜合素質(zhi)培養的重要(yao)(yao)內容,建筑工程(cheng)系一直非常重視工程(cheng)管(guan)理專業(ye)(ye)的實(shi)踐教學(xue)(xue)改革(ge)(ge),加(jia)強對(dui)(dui)學(xue)(xue)生實(shi)踐能(neng)力的培養[3],通(tong)(tong)過實(shi)踐教學(xue)(xue)改革(ge)(ge),取得(de)了許多成績(ji),近幾年實(shi)際就業(ye)(ye)率逐年提高(gao),學(xue)(xue)生實(shi)習(xi)過程(cheng)中、就業(ye)(ye)后企業(ye)(ye)普遍(bian)反饋職業(ye)(ye)勝任能(neng)力強,實(shi)踐能(neng)力突出,受(shou)到(dao)(dao)企業(ye)(ye)歡迎。因此,考慮(lv)到(dao)(dao)土建類專業(ye)(ye)的專業(ye)(ye)特色,通(tong)(tong)過校企合作的方式,進(jin)行應用型人(ren)(ren)才(cai)(cai)培養,對(dui)(dui)于提高(gao)教學(xue)(xue)質(zhi)量、培養更加(jia)符合社會和(he)專業(ye)(ye)需要(yao)(yao)的人(ren)(ren)才(cai)(cai)意義重大。

參考文獻:

[1]李明(ming),吳光東.基于應用型人才(cai)培養的工(gong)程管理專業實踐教學(xue)探討(tao)[J].赤峰(feng)學(xue)院學(xue)報(自然科學(xue)版),2013(11).

[2]程(cheng)明勇,劉勝(sheng)華(hua).工程(cheng)管理(li)專業實踐(jian)教學(xue)體系研(yan)究[J].物流工程(cheng)與(yu)管理(li),2013(11).

篇10

房地產市場(chang)工(gong)(gong)程設(she)(she)計(ji)質(zhi)量會對建(jian)設(she)(she)工(gong)(gong)程造(zao)價(jia)產生關鍵(jian)性(xing)的(de)(de)(de)影響,本文針對房屋建(jian)筑不(bu)(bu)同專業類型工(gong)(gong)程的(de)(de)(de)設(she)(she)計(ji)質(zhi)量缺(que)陷成(cheng)(cheng)本及表(biao)現(xian)形式(shi)展開了研究,研究結果表(biao)明不(bu)(bu)同類型工(gong)(gong)程的(de)(de)(de)設(she)(she)計(ji)質(zhi)量缺(que)陷成(cheng)(cheng)本差(cha)異較(jiao)大,設(she)(she)計(ji)質(zhi)量缺(que)陷問(wen)題的(de)(de)(de)表(biao)現(xian)形式(shi)也(ye)不(bu)(bu)盡相同。論文的(de)(de)(de)研究結果對于房建(jian)工(gong)(gong)程的(de)(de)(de)設(she)(she)計(ji)管理(li)具有一定的(de)(de)(de)參考價(jia)值。

【關鍵詞】

設計(ji)質量(liang)缺陷;成(cheng)本;房建工程

建設(she)(she)(she)(she)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)造(zao)價(jia)的(de)(de)(de)70%是由設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)階段的(de)(de)(de)工(gong)(gong)作所決定(ding)的(de)(de)(de),設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)會(hui)對(dui)(dui)(dui)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)造(zao)價(jia)產(chan)生(sheng)關鍵(jian)性(xing)的(de)(de)(de)影響(xiang)。由于施工(gong)(gong)是以(yi)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)成果為基(ji)礎進(jin)行(xing)(xing)的(de)(de)(de),如(ru)果設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)存在(zai)缺陷(xian)(xian)(xian),不僅會(hui)導致(zhi)(zhi)(zhi)(zhi)變更設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)的(de)(de)(de)增(zeng)加,還會(hui)導致(zhi)(zhi)(zhi)(zhi)施工(gong)(gong)中的(de)(de)(de)停工(gong)(gong)、窩(wo)工(gong)(gong)和返工(gong)(gong),導致(zhi)(zhi)(zhi)(zhi)大量(liang)(liang)(liang)直接(jie)經(jing)(jing)濟(ji)(ji)損失(shi)(shi);此外(wai)還會(hui)導致(zhi)(zhi)(zhi)(zhi)環境成本、社會(hui)成本等間(jian)接(jie)經(jing)(jing)濟(ji)(ji)損失(shi)(shi)。設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)問題一(yi)(yi)直受到(dao)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)界與學術界關注(zhu)。夏云濤、張威琪(qi)(1999)從建設(she)(she)(she)(she)單(dan)位、設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)單(dan)位等三個角度提(ti)出了(le)(le)影響(xiang)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)的(de)(de)(de)9個因(yin)素,并提(ti)出了(le)(le)加強勘(kan)察(cha)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)管(guan)理的(de)(de)(de)對(dui)(dui)(dui)策(ce)與建議[1]。孫長江(2006)研究(jiu)(jiu)了(le)(le)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)變更產(chan)生(sheng)的(de)(de)(de)原因(yin)和種類(lei),并提(ti)出了(le)(le)相應的(de)(de)(de)改進(jin)建議[2]。劉貴(gui)文(2009)分析了(le)(le)民(min)用建筑(zhu)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)現狀,針(zhen)對(dui)(dui)(dui)涉及(ji)到(dao)跨行(xing)(xing)業(ye)、跨行(xing)(xing)政隸屬關系(xi)的(de)(de)(de)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)系(xi)統的(de)(de)(de)管(guan)理問題,提(ti)出“社會(hui)綜合(he)管(guan)理概念”來(lai)改善民(min)用建筑(zhu)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)[3]。盡管(guan)以(yi)往(wang)的(de)(de)(de)學者(zhe)圍繞設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)缺陷(xian)(xian)(xian)產(chan)生(sheng)的(de)(de)(de)原因(yin)及(ji)對(dui)(dui)(dui)策(ce)進(jin)行(xing)(xing)了(le)(le)較多(duo)(duo)的(de)(de)(de)研究(jiu)(jiu),但對(dui)(dui)(dui)于不同類(lei)型的(de)(de)(de)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)由于設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)缺陷(xian)(xian)(xian)到(dao)底帶來(lai)了(le)(le)多(duo)(duo)大的(de)(de)(de)經(jing)(jing)濟(ji)(ji)損失(shi)(shi)這一(yi)(yi)問題尚未開展深入的(de)(de)(de)研究(jiu)(jiu),因(yin)此提(ti)出的(de)(de)(de)政策(ce)建議往(wang)往(wang)缺乏針(zhen)對(dui)(dui)(dui)性(xing)[4]。本研究(jiu)(jiu)擬采用問卷調查(cha)與統計(ji)(ji)(ji)(ji)分析方法,深入調查(cha)分析在(zai)不同專(zhuan)業(ye)類(lei)型的(de)(de)(de)房屋(wu)建筑(zhu)工(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)中,由于設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)缺陷(xian)(xian)(xian)所導致(zhi)(zhi)(zhi)(zhi)的(de)(de)(de)直接(jie)經(jing)(jing)濟(ji)(ji)損失(shi)(shi)的(de)(de)(de)大小,以(yi)及(ji)導致(zhi)(zhi)(zhi)(zhi)設(she)(she)(she)(she)計(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)缺陷(xian)(xian)(xian)產(chan)生(sheng)原因(yin)的(de)(de)(de)類(lei)型及(ji)頻次,在(zai)此基(ji)礎上提(ti)出相應的(de)(de)(de)預防對(dui)(dui)(dui)策(ce)。

1研究方法

本研究主要采用問(wen)卷調查與(yu)半結構(gou)訪談的形式采集(ji)研究數據。

(1)調(diao)(diao)(diao)查方式(shi)。為(wei)獲得相對客觀的(de)調(diao)(diao)(diao)查數據,本研(yan)究的(de)調(diao)(diao)(diao)查沒有采(cai)(cai)用(yong)常規的(de)個人意(yi)見調(diao)(diao)(diao)查方式(shi),而是要求被(bei)調(diao)(diao)(diao)查對象選擇一個近一年(nian)內完工的(de)實(shi)際工程項目進行調(diao)(diao)(diao)研(yan),圍(wei)繞該項目回答(da)相應的(de)問(wen)題。為(wei)幫助被(bei)調(diao)(diao)(diao)更好地(di)理解(jie)調(diao)(diao)(diao)查問(wen)卷的(de)內容,調(diao)(diao)(diao)查采(cai)(cai)用(yong)電話訪談(tan)與在線電子問(wen)卷相結(jie)合的(de)方式(shi)展開(kai)。

(2)調(diao)(diao)查對(dui)象。本次(ci)調(diao)(diao)查的(de)對(dui)象均為(wei)深(shen)入(ru)參與或(huo)(huo)者主管工程(cheng)項(xiang)目成(cheng)本管理(li)(li)(li)、投(tou)資(zi)控制的(de)施工單位項(xiang)目經理(li)(li)(li)、計(ji)劃(hua)合同(tong)部經理(li)(li)(li)、業主方項(xiang)目經理(li)(li)(li)、合同(tong)部或(huo)(huo)者成(cheng)本部經理(li)(li)(li)、項(xiang)目總監(jian)理(li)(li)(li)工程(cheng)師(shi)等。本次(ci)調(diao)(diao)查對(dui)象主要從各(ge)省市的(de)一級建造師(shi)、注冊(ce)造價工程(cheng)師(shi)以及注冊(ce)監(jian)理(li)(li)(li)工程(cheng)師(shi)的(de)崗位培訓通訊錄中隨機選取,共發出898份調(diao)(diao)查問卷(juan),回(hui)收樣本512份,在剔除了無效樣本45份后獲得(de)有(you)效樣本467份。

(3)調(diao)查內容(rong)。調(diao)查問(wen)卷內容(rong)共分(fen)(fen)三部(bu)分(fen)(fen):第一(yi)部(bu)分(fen)(fen)為被調(diao)查對象的(de)背景資料(liao),包括年齡、性別(bie)、工(gong)作(zuo)經驗、工(gong)作(zuo)單位(wei)(wei)、工(gong)作(zuo)崗位(wei)(wei)等共6個(ge)問(wen)題(ti);第二部(bu)分(fen)(fen)為調(diao)查項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)背景資料(liao),包括項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)名(ming)稱、被調(diao)在項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)中(zhong)的(de)具體職(zhi)責、項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)的(de)專業類別(bie)、項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)地(di)點、項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)的(de)合同金額、項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)的(de)開工(gong)及(ji)完工(gong)日期等共9個(ge)問(wen)題(ti);第三部(bu)分(fen)(fen)為調(diao)查項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)的(de)設計(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)缺(que)(que)陷(xian)情況,包括由于(yu)設計(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)缺(que)(que)陷(xian)導致的(de)合同金額的(de)增加(jia)、由于(yu)設計(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)缺(que)(que)陷(xian)導致的(de)工(gong)期延(yan)長,另外還要求被調(diao)選(xuan)擇(ze)項(xiang)(xiang)(xiang)(xiang)(xiang)目(mu)(mu)(mu)中(zhong)3個(ge)影(ying)響最大的(de)設計(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)缺(que)(que)陷(xian)回(hui)答設計(ji)質(zhi)(zhi)(zhi)(zhi)量(liang)缺(que)(que)陷(xian)的(de)主要表現形(xing)式。

2調查結果

首(shou)先(xian),調查對象類型及(ji)(ji)調查項(xiang)目(mu)(mu)類型。本(ben)(ben)次調查共(gong)取(qu)得有效樣(yang)本(ben)(ben)467份,其(qi)中包括地基基礎工(gong)(gong)(gong)程(cheng)(cheng)項(xiang)目(mu)(mu)97份,結構工(gong)(gong)(gong)程(cheng)(cheng)項(xiang)目(mu)(mu)131份,裝飾裝修工(gong)(gong)(gong)程(cheng)(cheng)項(xiang)目(mu)(mu)118份,安裝工(gong)(gong)(gong)程(cheng)(cheng)項(xiang)目(mu)(mu)121份,樣(yang)本(ben)(ben)數據的(de)(de)提供(gong)者分別為施工(gong)(gong)(gong)項(xiang)目(mu)(mu)經理(li)、施工(gong)(gong)(gong)方(fang)合同部經理(li)、業(ye)主(zhu)方(fang)項(xiang)目(mu)(mu)經理(li)、業(ye)主(zhu)方(fang)合同部經理(li)、總監(jian)理(li)工(gong)(gong)(gong)程(cheng)(cheng)師。其(qi)次,設(she)計(ji)(ji)(ji)(ji)質(zhi)量(liang)缺(que)陷(xian)成本(ben)(ben)。設(she)計(ji)(ji)(ji)(ji)質(zhi)量(liang)缺(que)陷(xian)成本(ben)(ben)及(ji)(ji)工(gong)(gong)(gong)期(qi)延誤百分比分別按照設(she)計(ji)(ji)(ji)(ji)質(zhi)量(liang)缺(que)陷(xian)所導致的(de)(de)成本(ben)(ben)增加與工(gong)(gong)(gong)期(qi)增加與合同金額及(ji)(ji)合同工(gong)(gong)(gong)期(qi)的(de)(de)比值來計(ji)(ji)(ji)(ji)算。再者,設(she)計(ji)(ji)(ji)(ji)質(zhi)量(liang)缺(que)陷(xian)產生原(yuan)因。根(gen)據文獻研究(jiu)的(de)(de)結果,本(ben)(ben)文把設(she)計(ji)(ji)(ji)(ji)質(zhi)量(liang)缺(que)陷(xian)的(de)(de)表現(xian)形式分為四類:施工(gong)(gong)(gong)條件與設(she)計(ji)(ji)(ji)(ji)不(bu)一致、設(she)計(ji)(ji)(ji)(ji)與業(ye)主(zhu)要求不(bu)一致、設(she)計(ji)(ji)(ji)(ji)的(de)(de)可施工(gong)(gong)(gong)性(xing)差及(ji)(ji)設(she)計(ji)(ji)(ji)(ji)中出(chu)現(xian)了錯漏碰缺(que)。

3分析與討論

研究結果表明房屋建筑的(de)(de)(de)(de)(de)(de)(de)(de)各專業(ye)(ye)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)中的(de)(de)(de)(de)(de)(de)(de)(de)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)成(cheng)本及(ji)表現(xian)形式存在較(jiao)(jiao)(jiao)大(da)差異(yi)。安裝(zhuang)(zhuang)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)由(you)(you)于設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)所(suo)(suo)導致(zhi)(zhi)的(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)本損失(shi)是(shi)最高(gao)的(de)(de)(de)(de)(de)(de)(de)(de),高(gao)達(da)(da)合同(tong)(tong)金(jin)額的(de)(de)(de)(de)(de)(de)(de)(de)9.2%,同(tong)(tong)時由(you)(you)于設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)所(suo)(suo)導致(zhi)(zhi)的(de)(de)(de)(de)(de)(de)(de)(de)工(gong)(gong)(gong)期(qi)(qi)延(yan)長(chang)也(ye)達(da)(da)到(dao)合同(tong)(tong)工(gong)(gong)(gong)期(qi)(qi)的(de)(de)(de)(de)(de)(de)(de)(de)21.3%;而(er)安裝(zhuang)(zhuang)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)主(zhu)(zhu)要表現(xian)為設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)中的(de)(de)(de)(de)(de)(de)(de)(de)錯漏碰(peng)缺(que)(que)(que)(que)(que),達(da)(da)到(dao)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)總(zong)數(shu)(shu)的(de)(de)(de)(de)(de)(de)(de)(de)61.9%,其次就(jiu)是(shi)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)可施工(gong)(gong)(gong)性(xing)較(jiao)(jiao)(jiao)差,占(zhan)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)的(de)(de)(de)(de)(de)(de)(de)(de)25.7%。而(er)裝(zhuang)(zhuang)飾裝(zhuang)(zhuang)修工(gong)(gong)(gong)程(cheng)(cheng)(cheng)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)所(suo)(suo)造(zao)(zao)(zao)(zao)成(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)本提高(gao)達(da)(da)到(dao)合同(tong)(tong)金(jin)額的(de)(de)(de)(de)(de)(de)(de)(de)8.1%,造(zao)(zao)(zao)(zao)成(cheng)合同(tong)(tong)工(gong)(gong)(gong)期(qi)(qi)延(yan)長(chang)11.2%;裝(zhuang)(zhuang)飾裝(zhuang)(zhuang)修工(gong)(gong)(gong)程(cheng)(cheng)(cheng)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)錯漏碰(peng)缺(que)(que)(que)(que)(que)也(ye)比(bi)較(jiao)(jiao)(jiao)多,達(da)(da)到(dao)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)總(zong)數(shu)(shu)的(de)(de)(de)(de)(de)(de)(de)(de)52.3%,其次就(jiu)是(shi)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)與(yu)(yu)業(ye)(ye)主(zhu)(zhu)的(de)(de)(de)(de)(de)(de)(de)(de)需求不(bu)(bu)一致(zhi)(zhi)的(de)(de)(de)(de)(de)(de)(de)(de)情況也(ye)比(bi)較(jiao)(jiao)(jiao)突出,占(zhan)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)的(de)(de)(de)(de)(de)(de)(de)(de)36.1%。地(di)基(ji)基(ji)礎(chu)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)中由(you)(you)于設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)所(suo)(suo)導致(zhi)(zhi)的(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)本損失(shi)相對(dui)較(jiao)(jiao)(jiao)低,達(da)(da)合同(tong)(tong)金(jin)額的(de)(de)(de)(de)(de)(de)(de)(de)6.3%,而(er)在但(dan)導致(zhi)(zhi)的(de)(de)(de)(de)(de)(de)(de)(de)工(gong)(gong)(gong)期(qi)(qi)延(yan)長(chang)現(xian)象比(bi)較(jiao)(jiao)(jiao)突出,工(gong)(gong)(gong)期(qi)(qi)延(yan)長(chang)達(da)(da)合同(tong)(tong)工(gong)(gong)(gong)期(qi)(qi)的(de)(de)(de)(de)(de)(de)(de)(de)19.8%;而(er)地(di)基(ji)基(ji)礎(chu)工(gong)(gong)(gong)程(cheng)(cheng)(cheng)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)主(zhu)(zhu)要表現(xian)為施工(gong)(gong)(gong)條件與(yu)(yu)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)圖紙(zhi)提供的(de)(de)(de)(de)(de)(de)(de)(de)情況不(bu)(bu)一致(zhi)(zhi),達(da)(da)到(dao)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)總(zong)數(shu)(shu)的(de)(de)(de)(de)(de)(de)(de)(de)59.6%,其次就(jiu)是(shi)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)錯漏碰(peng)缺(que)(que)(que)(que)(que),占(zhan)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)的(de)(de)(de)(de)(de)(de)(de)(de)25.5%。結構工(gong)(gong)(gong)程(cheng)(cheng)(cheng)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)所(suo)(suo)造(zao)(zao)(zao)(zao)成(cheng)的(de)(de)(de)(de)(de)(de)(de)(de)成(cheng)本提高(gao)是(shi)最低的(de)(de)(de)(de)(de)(de)(de)(de),約為合同(tong)(tong)金(jin)額的(de)(de)(de)(de)(de)(de)(de)(de)3.7%,造(zao)(zao)(zao)(zao)成(cheng)合同(tong)(tong)工(gong)(gong)(gong)期(qi)(qi)延(yan)長(chang)4.9%;結構工(gong)(gong)(gong)程(cheng)(cheng)(cheng)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)主(zhu)(zhu)要表現(xian)為設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)與(yu)(yu)業(ye)(ye)主(zhu)(zhu)的(de)(de)(de)(de)(de)(de)(de)(de)需求差異(yi)較(jiao)(jiao)(jiao)大(da),占(zhan)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)總(zong)數(shu)(shu)的(de)(de)(de)(de)(de)(de)(de)(de)43.7%,其次就(jiu)是(shi)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)的(de)(de)(de)(de)(de)(de)(de)(de)可施工(gong)(gong)(gong)性(xing)較(jiao)(jiao)(jiao)差,占(zhan)設(she)(she)(she)(she)(she)(she)(she)(she)計(ji)(ji)(ji)(ji)(ji)(ji)質(zhi)(zhi)(zhi)(zhi)(zhi)量(liang)(liang)(liang)(liang)缺(que)(que)(que)(que)(que)陷(xian)的(de)(de)(de)(de)(de)(de)(de)(de)31.3%。

4結語

本文針對(dui)(dui)房(fang)屋建(jian)筑(zhu)不同類(lei)型(xing)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)的(de)設(she)計(ji)(ji)(ji)(ji)質(zhi)量缺(que)(que)陷(xian)成本及表(biao)(biao)現形式(shi)(shi)展(zhan)開了研(yan)究,研(yan)究結(jie)果表(biao)(biao)明安裝工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)、裝飾裝修(xiu)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)以及地基(ji)(ji)基(ji)(ji)礎工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)領(ling)域設(she)計(ji)(ji)(ji)(ji)質(zhi)量缺(que)(que)陷(xian)問題較(jiao)嚴重(zhong),不僅造成了較(jiao)顯著的(de)附加成本,且對(dui)(dui)建(jian)設(she)項目工(gong)(gong)(gong)(gong)期(qi)也造成了較(jiao)嚴重(zhong)影響。而(er)結(jie)構工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)領(ling)域的(de)設(she)計(ji)(ji)(ji)(ji)質(zhi)量水平相對(dui)(dui)較(jiao)高。不同專業類(lei)型(xing)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)的(de)設(she)計(ji)(ji)(ji)(ji)質(zhi)量缺(que)(que)陷(xian)表(biao)(biao)現形式(shi)(shi)存在較(jiao)大差異,安裝工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)和(he)裝飾裝修(xiu)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)的(de)設(she)計(ji)(ji)(ji)(ji)質(zhi)量缺(que)(que)陷(xian)主要表(biao)(biao)現為設(she)計(ji)(ji)(ji)(ji)中的(de)錯(cuo)、漏、碰、缺(que)(que)問題比較(jiao)嚴重(zhong),而(er)地基(ji)(ji)基(ji)(ji)礎工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)則主要表(biao)(biao)現為施工(gong)(gong)(gong)(gong)條件(jian)與設(she)計(ji)(ji)(ji)(ji)圖(tu)紙(zhi)提供的(de)情況不一致。對(dui)(dui)于安裝工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)和(he)裝飾裝修(xiu)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)而(er)言,采(cai)用(yong)BIM技術進行設(she)計(ji)(ji)(ji)(ji),能(neng)較(jiao)好地解決設(she)計(ji)(ji)(ji)(ji)中的(de)錯(cuo)、漏、碰、缺(que)(que)等問題。換而(er)言之,在安裝工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)和(he)裝飾裝修(xiu)工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)的(de)設(she)計(ji)(ji)(ji)(ji)過程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)中推廣(guang)BIM技術能(neng)夠帶來的(de)潛在價(jia)值約(yue)為工(gong)(gong)(gong)(gong)程(cheng)(cheng)(cheng)(cheng)(cheng)(cheng)造價(jia)的(de)4%~5%,同時還能(neng)節(jie)約(yue)項目的(de)施工(gong)(gong)(gong)(gong)工(gong)(gong)(gong)(gong)期(qi)。

作者:陳(chen)洋(yang)俊 郭文嘉 謝洪濤 單(dan)位(wei):昆明理工(gong)大學工(gong)程管理系

參考文獻

[1]夏云濤,張威琪.論(lun)工程設計質量控制[J].森(sen)林工程,1999,15(2):53-54.

[2]孫長江.工程設計變更對造價(jia)管理(li)的(de)影響[J].鐵(tie)路(lu)工程造價(jia)管理(li),2006,21(1):9-11.