Citation: Zeng Tiemei, Xu Hengcheng, Zhao Long, Chen Jian. Study on Safety Support System for Metro Shield Tunneling Construction. Journal of Information Technologyin Civil Engineering and Architecture, 2019, 11(4): 104-110. doi: 10.16670/j.cnki.cn11-5823/tu.2019.04.16
2019, 11(4): 104-110. doi: 10.16670/j.cnki.cn11-5823/tu.2019.04.16
Study on Safety Support System for Metro Shield Tunneling Construction
1. | Office of the General Chief Engineer, Wuhan Metro Group Co., Ltd., Wuhan 430070, China |
2. | School of Civil Engineering and Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China |
3. | Hubei Engineering Research Center for Virtual, Safe and Automated Construction, Wuhan 430074, China |
4. | Shanghai Tunnel Engineering Co., Ltd., Shanghai 200032, China |
Based on the rapid development of urban rail transit, this paper analyzes the advantages of shield tunneling for tunnel construction and management difficulties, and summarizes the advantages and disadvantages of existing shield construction information management system.By investigating the safety construction requirements of the Wuhan Sanyang Road Cross-river Tunnel Project, a safety operation support system for shield construction was developed.This paper first introduces the concept of Browser/Server (B/S) network architecture adopted by the system, then further elaborates the system structure framework, development platform and technology, and lastly introduces in details the main functions of the system, namely: multi-project management, shield construction record online filing, shield parameters of remote monitoring, shield parameter analysis, time statistics and other functions.The system has deployed the site of Wuhan Sanyang Road Cross-river Tunnel Project, which has played a positive role in the safety construction and project management, as well as achieved good results in practice.
[1] |
Ding L Y, XU J.A Review of Metro Construction in China:Organization, Market, Cost, Safety and Schedule[J].Frontiers of Engineering Management, 2017, 4(1): 4-19. |
[2] |
徐延召, 李亚巍, 杨俊.盾构空推过矿山法隧道施工技术及质量控制[J].土木建筑工程信息技术, 2016, 8(1): 53-58. |
[3] |
曾铁梅, 左敏, 陈磊.地铁盾构双线穿越大型铁路站场引起的既有线路变形分析[J].土木建筑工程信息技术, 2013, 5(6): 12-16, 38. |
[4] |
杨俊, 曾铁梅.多条重叠与近间距盾构隧道施工控制及效果分析[J].土木建筑工程信息技术, 2014, 6(3): 50-54. |
[5] |
胡向东, 张庆贺.盾构推进监控数据库及动态显示系统[J].岩石力学与工程学报, 2003, 22(5): 834-837.doi: 10.3321/j.issn:1000-6915.2003.05.027 |
[6] |
周文波, 胡珉.盾构隧道信息化施工智能管理系统设计及应用[J].岩石力学与工程学报, 2004, 23(s2): 5122-5127. |
[7] |
梁景春.土压平衡式盾构机监控系统的设计[D].大连: 大连理工大学, 2011. |
[8] |
廖杰荣, 康后金, 刘文静.泥水盾构施工实时管理信息系统的研发与应用[J].公路, 2011(4): 133-137.doi: 10.3969/j.issn.1671-2668.2011.04.036 |
[9] |
江玉生, 杨志勇, 矫伟刚, 等.基于BS构架下的盾构施工安全风险监控系统的研发与应用[C]//智慧城市与轨道交通2015年中国城市科学研究会数字城市专业委员会轨道交通学组年会论文集.北京: 中国城市出版社, 2015, 165-168. |
[10] |
陈文远, 张继宏, 王国庆.盾构集群远程监控与智能化决策支持系统的开发与应用[J].施工技术, 2015, 44(13): 105-108. |
[11] |
奚浩兵.盾构施工状态参数信息处理及网络化传输系统研究[D].同济大学, 2006. |
[12] |
王珩玮, 胡振中, 林佳瑞, 等.面向Web的BIM三维浏览与信息管理[J].土木建筑工程信息技术, 2013, 5(3): 1-7. |
[13] |
江玉生, 杨志勇, 蔡永立.盾构/TBM隧道施工实时管理信息系统[M].北京:人民交通出版社, 2007. |
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