2020, 12(1): 60-69. doi: 10.16670/j.cnki.cn11-5823/tu.2020.01.09
BIM技术在上海中芯大型电子厂房钢桁架滚装施工中的应用
上海宝冶集团有限公司工业工程公司,上海 201900 |
BIM Application in Rolling Construction of Steel Truss Installation of Large-Scaled Shanghai Zhongxin Electronic Device Plant
Shanghai Baoye Group Co., Ltd., Shanghai 210900, China |
引用本文: 刘江帆, 覃扬敏, 王学珍. BIM技术在上海中芯大型电子厂房钢桁架滚装施工中的应用[J]. 土木建筑工程信息技术, 2020, 12(1): 60-69. doi: 10.16670/j.cnki.cn11-5823/tu.2020.01.09
Citation: Liu Jiangfan, Qin Yangmin, Wang Xuezhen. BIM Application in Rolling Construction of Steel Truss Installation of Large-Scaled Shanghai Zhongxin Electronic Device Plant[J]. Journal of Information Technologyin Civil Engineering and Architecture, 2020, 12(1): 60-69. doi: 10.16670/j.cnki.cn11-5823/tu.2020.01.09
摘要:随着BIM技术的不断发展,BIM技术在工业工程中的应用越来越受到重视,尤其在大型微电子厂房工程中的应用效果更为突出。本文结合上海中芯国际电子厂房工程实例,从工程的前期阶段图纸深化及最优方案编制,到工程实施阶段的BIM空间管理、优化设计、施工可视化、技术交底,在施工前检查碰撞、优化,避免在施工过程中出现返工、材料报废、拖延工期等施工问题,从而为工程实现最大化效益,以及为解决传统钢结构安装时间长、卸荷难度大等问题,运用模块化BIM技术,借鉴SPMT模块车运输优势,研发出一种基于SPMT模块车大跨度钢结构桁架滚装新技术。并对华夫板承载力、滚装桁架稳定性等进行验算,保证了整体滚装施工的安全可靠,为后期类似大跨度钢桁架屋面施工提供技术支持。
Abstract: The continuous development of the BIM technology has earned itself more attention and importance than ever in the industrial engineering, especially in the construction engineering of large-scaled micro electronic devices plant for the excellent application effects. In this paper, the practical engineering of Shanghai Zhongxin electronic device plant is studied to achieve the maximum benefits of BIM application. In the early stage of project, BIM is applied for deepening drawings and optimizing construction scheme, and during the project implementation stage, BIM is applied for 3D space management, design optimization, construction visualization, and technical disclosure. BIM is also applied in pre-construction stage to implement collision detection and optimization to avoid reconstruction, material scrapping, construction delay and other problems in construction stage. BIM application also contributes to solving the time consuming problem and difficulties in taking off loadings in traditional steel structure installation. The advantages of the SPMT module transportation vehicle is adopted to develop a new technology of rolling installation of large-span steel truss structure based on the SPMT module vehicle. The loading capacity of waffle board and stability of truss during rolling installation have been both double checked through calculation, ensuring the safety and reliability of the construction of rolling installation, which provides technical supports of the following similar construction of large-span steel roof projects.
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