Citation: Liqiang Du, Yuchao Tong, Xinjun Yan, Tao Zhang, Ming Zheng. Application of Construction Grid Management in Hangzhou West Railway Station Based on 4D-BIM Technology. Journal of Information Technologyin Civil Engineering and Architecture, 2022, 14(2): 18-27. doi: 10.16670/j.cnki.cn11-5823/tu.2022.02.03
2022, 14(2): 18-27. doi: 10.16670/j.cnki.cn11-5823/tu.2022.02.03
Application of Construction Grid Management in Hangzhou West Railway Station Based on 4D-BIM Technology
1. | China Railway Construction Engineering Group Co., Ltd., Beijing 100160, China |
2. | Research Institute of Architectural Engineering of China Railway Construction Engineering Group, Beijing 100160, China |
In recent years, China has successively developed and renovated many large railway hubs, such as Xiong′an Station, Qinghe Station, Fengtai Station, etc. These stations have been developed from simple train stations to complex city transport hubs, which shows the characteristics of scaled area, integrated function, and diversified shape. Thus, it demands much higher requirements on EPC. How to eliminate the "Information Island" on the construction site through digitalization has become a research direction. Taking Hangzhou West Railway Station as an example, this paper has introduced 4D-BIM technologies and grid management from four aspects, which are, grid management platform system architecture, grid coding, BIM model grid division, and grid construction management process. This shows the efficiencies during the construction of Hangzhou West Railway Station, and also presents the positive impacts to construction schedule, construction quality, and construction safety.
[1] |
李胜全, 张强华. 高速铁路时代大型铁路枢纽的发展模式探讨——从"交通综合体"到"城市综合体"[J]. 规划师, 2011, 27(7): 26-30.doi: 10.3969/j.issn.1006-0022.2011.07.005 |
[2] |
宋子威, 文功启, 潘茂盛, 等. 杭州东站桥建合一结构桥梁设计关键技术研究[J]. 铁道工程学报, 2016, 33(10): 73-76.doi: 10.3969/j.issn.1006-2106.2016.10.016 |
[3] |
刘丽娜, 张诣. 基于4D-BIM的轨道交通项目动态管理研究[J]. 内蒙古师范大学学报(自然科学汉文版), 2015(4): 474-476, 480.doi: 10.3969/j.issn.1001-8735.2015.04.013 |
[4] |
张建平, 曹铭, 张洋. 基于IFC标准和工程信息模型的建筑施工4D管理系统[J]. 工程力学, 2005, (S1): 220-227. |
[5] |
Kathleen McKinney, Jennifer Kim', Martin Fischer, et al. Interactive4D-CAD[M]. NewYork: Computing in CivilEngineering, 1996. |
[6] | |
[7] |
石纯, 魏廉虢, 王霞波. 差异性区域网格化环境管理初探[J]. 中国人口·资源与环境, 2007, 17(2): 73-75.doi: 10.3969/j.issn.1002-2104.2007.02.014 |
[8] |
成旭, 蔡宏伟, 张卫星, 等. 网格化海事动态监管模式下的船舶交通管理[J]. 中国航海, 2012, 35(4): 90-95. |
[9] |
何厚全, 成虎, 张建坤. 网格化建筑施工安全监管模式及运行机制研究[J]. 中国安全科学学报, 2013, 23(9): 142-147. |
[10] | |
[11] |
曹少卫, 严心军, 董无穷, 等. 钢结构工程全生命周期管理平台在高铁站房工程中的研究与应用[J]. 土木建筑工程信息技术, 2021, 13(2): 51-59. |
[12] | |
[13] |
何晨琛, 王晓鸣, 吴晶霞, 等. 基于BIM的建设项目进度控制研究[J]. 建筑经济, 2015, 36(2): 33-35. |
[14] |
付振. 基于PKPM-BIM的工程项目进度管理研究[D]. 山东大学, 2017. |
[15] |
CIRIBINI A L C, MASTROLEMBO VENTURA S, PANERONI M. Implementation of an interoperable process to optimise design and construction phases of a residential building: A BIM Pilot Project[J]. Automation in Construction, 2016, 71: 62-73. |
[16] |
周慧恩, 王乾坤, 梅婷婷. 适用于工业化钢结构的4DBIM虚拟建造方法研究[J]. 钢结构, 2016, 31(2): 120-125. |
[17] |
侯学良, 薛靖国, 王毅, 等. 基于投影的施工图像与BIM模型配准叠加方法[J]. 图学学报, 2021, 42(1): 141-149. |
[18] |
PARK J, CAI H, PERISSIN D. Bringing Information to the Field: Automated Photo Registration and 4D BIM[J]. Journal of Computing in Civil Engineering, 2018, 32(2): . |
[19] |
周鹏超. 基于4D-BIM技术的工程项目进度管理研究[D]. 江西: 江西理工大学, 2015. |
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