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Safety management in tunnel construction: Case study of Wuhan metro construction in China

机译:隧道施工安全管理:以中国武汉地铁建设为例

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This paper presents a systematic approach for Overall Process Safety Management (OPSM) in tunnel construction, including safety system design, analysis, control and effect assessment. Wuhan Yangtze Metro Tunnel in China is used for a case study. A slurry shield machine is required to pass through Wuhan Ventilation Shaft with a cover depth of 42 m, a hydraulic pressure of 0.44 MPa and a curve radius of 350 m. To deal with the challenging technical issues in such complex environments, various schemes were compared and discussed as to figure out a more reasonable solution for the waterproofing and reinforcing works at first. Then, ANSYS finite element software is employed to simulate a numerical model of the drilling process, investigate the distribution of the stress field in the frozen wall, and to verify the reliability of the selected scheme. Finally, control measures in response to all technical problems are put forward. The OPSM approach can be applied by practitioners in the industry to provide effective guidelines for the safety management in urban tunnel construction, and to increase the likelihood of a successful project in a complex environment.
机译:本文提出了一种隧道施工全过程安全管理(OPSM)的系统方法,包括安全系统设计,分析,控制和效果评估。以中国武汉长江地铁隧道为例。要求泥浆护罩机通过武汉通风井,井盖深度为42 m,液压为0.44 MPa,弯道半径为350 m。为了应对这种复杂环境中的挑战性技术问题,首先对各种方案进行了比较和讨论,以便为防水和加固工作找到更合理的解决方案。然后,使用ANSYS有限元软件模拟钻井过程的数值模型,研究冻结壁中应力场的分布,并验证所选方案的可靠性。最后,针对所有技术问题提出了控制措施。该行业的从业人员可以使用OPSM方法来为城市隧道建设中的安全管理提供有效的指导,并增加在复杂环境中成功进行项目的可能性。

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