1.广东省机场管理集团有限公司工程建设指挥部
2.中建三局集团有限公司
扫 描 看 全 文
李凯, 李临高, 马磊, 等. 基于BIM的大型枢纽机场复杂工程工期控制研究[J]. 智能建筑与智慧城市, 2023,(7):117-120.
LI Kai, LI Lin-gao, MA Lei, et al. Research on Construction Period Control of the Complex Engineering of BIM-based Large Airport Hub[J]. 2023,(7):117-120.
李凯, 李临高, 马磊, 等. 基于BIM的大型枢纽机场复杂工程工期控制研究[J]. 智能建筑与智慧城市, 2023,(7):117-120. DOI: 10.13655/j.cnki.ibci.2023.07.036.
LI Kai, LI Lin-gao, MA Lei, et al. Research on Construction Period Control of the Complex Engineering of BIM-based Large Airport Hub[J]. 2023,(7):117-120. DOI: 10.13655/j.cnki.ibci.2023.07.036.
智能建造及建筑工业化协同发展既给项目管理带来了新的机遇又提出了更高的要求。文章立足于智能建造相关技术,将BIM和进度总控技术耦合,通过群塔系统解决无人机禁飞问题,进行实景模型创建;将施工深化BIM模型和进度计划叠合成4D-BIM进度模型;将通过群塔装置采集的实景模型与4D-进度模型在同一的协同环境下叠合,能够实现进行实景模型与进度模型的可视化比对分析,形成一种计划管理和工期控制的新型范式,为大型枢纽建设项目特别是禁飞区的改扩建工程提供了借鉴和参考。
The coordinated development of intelligent construction and building industrialization not only brings new opportunities but also presents higher demands for project management. Based on the technology of intelligent construction, the paper combines BIM and schedule control technology, solves the problem of no-fly UAV through group tower system, and constructs the real scene model; a 4D-BIM progress model is built through superimposing the construction deepening BIM model and progress plan; the real scene models collected through the group tower device and the 4D-schedule model are superimposed in the same collaborative environment, which can realize the visualized and comparative analysis between the real scene model and the schedule model, and form a new paradigm of plan management and progress control. It provides a reference for large hub construction projects, especially the reconstruction and expansion projects of no-fly zones.
智能建造建筑信息模型(BIM)进度总控实景模型
intelligent constructionBIMoverall progress controlreality model
中国民用航空局.《中国民航四型机场建设行动纲要(2020—2035年)》出台[J].中国民用航空,2020(2):72.
张锐,马志刚,徐涛,等.智慧机场发展研究与实践报告(国际篇)[R].北京:中国民航局机场司,2019.
张正.北京大兴国际机场航站楼核心区工程信息化管理应用研究[J].安装,2021(9):14-23.
罗灿.BIM技术在建设工程项目数字化管理中的应用[J].工程建设与设计,2022(4):224-226.
胡培婷,班孝林.BIM技术在深圳机场新一期扩建工程中的应用[C].//刘春晨.推进四型机场建设实现高质量发展.北京:中国民航出版社,2019:31-42.
卢喜成,吕皓,李晓亮,吴东阳.基于BIM的项目数字化管理在天府机场GTC的应用实践[J].四川建筑,2022(42):154-158.
付全波,范华冰,刘朋,邹先强,黄镇雄.鄂州花湖机场数字化设计应用创新与实践[J].中国勘察设计,2022(1):42-45.
ZHANG Wen-sheng,HAO Zi-qi,WANG Bing-zhan,et al. BIM modeling method and practice of tunnel reconstruction project based on point cloud[J].Journal of Chang’an University(Nature Science Edition).2021,41(1):59-68.
KISA A,OZMUS L,ERKEK B,et al.Oblique photogrammetry and usage on land administration[EB/OL].[2021-5-19].http://www.tkgm.gov.tr/sites/default/files/2020-10/1.pdfhttp://www.tkgm.gov.tr/sites/default/files/2020-10/1.pdf.
JIANG S,JIANG W S. UAV-based oblique photogammetry for 3D reconstruction of transmission line:practices and application [EB/OL].[2021-5-19].http://www.int-arch-photogram-remote-sens-spatial-inf-sci.net/XLII-2-W13/401/2019/ISPRS-ARCHIVES-XLII-2-W13-401-2019.pdfhttp://www.int-arch-photogram-remote-sens-spatial-inf-sci.net/XLII-2-W13/401/2019/ISPRS-ARCHIVES-XLII-2-W13-401-2019.pdf.
徐敬海,卜兰,杜东升,王曙光.建筑物BIM与实景三维模型融合方法研究[J].建筑结构学报,2021(10):215-222.
0
浏览量
4
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构