Coupled analysis and simulation of safety risk in subway tunnel construction by shallow-buried excavation method based on system dynamics

Hongliang Yu, Zhen Peng, Zhaoliang Wu, Zirui He, Chun Huang
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Abstract

To address the existing shortcomings in the research on the coupling of safety risk factors in subway tunnel construction using the shallow-buried excavation method, this paper conducts a coupled analysis and dynamic simulation of the safety risks associated with this construction method. Firstly, by analyzing the mechanisms and effects of risk coupling in shallow-buried excavation construction of subway tunnels, this study divides the risk system into four risk subsystems (human, material, management, and environment), establishes an evaluation index system for the coupling of safety risks, calculates the comprehensive weight values of the risk indicators using the AHP-entropy weight method, and constructs a risk coupling degree model by combining the inverse cloud model and efficacy function. Subsequently, based on the principles of system dynamics, a causal relationship diagram and a system dynamics simulation model for the coupling of “human-material” risks in construction are established using Vensim PLE software. Finally, the case study of the underground excavation section of Chengdu Metro Line 2 is employed to perform dynamic simulation using the established model. By adjusting the relevant risk coupling coefficients and simulation duration, the impact of the coupling of various risk factors on the safety risk level of the human-material coupling system is observed. The simulation results demonstrate that: 1) Heterogeneous coupling of human and material risks has a particularly significant effect on the system’s safety risks; 2) Violations by personnel and initial support structure defects are key risk coupling factors. The findings of this study provide new insights for decision-makers to assess the safety risk of shallow-buried excavation construction in subway tunnel.
基于系统动力学的浅埋开挖法地铁隧道施工安全风险耦合分析与模拟
针对目前浅埋开挖法地铁隧道施工安全风险因素耦合研究中存在的不足,本文对该施工方法的安全风险进行了耦合分析和动态模拟。首先,本研究通过分析地铁隧道浅埋开挖施工风险耦合的机理和影响,将风险系统划分为四个风险子系统(人、物、管理、环境),建立了安全风险耦合评价指标体系,利用AHP-熵权法计算了风险指标的综合权重值,并结合逆云模型和功效函数构建了风险耦合度模型。随后,根据系统动力学原理,利用 Vensim PLE 软件建立了建筑施工 "人-物 "风险耦合的因果关系图和系统动力学仿真模型。最后,以成都地铁 2 号线地下掘进段为案例,利用建立的模型进行动态模拟。通过调整相关风险耦合系数和仿真持续时间,观察各种风险因素的耦合对人-物耦合系统安全风险等级的影响。模拟结果表明1) 人与物质风险的异质耦合对系统的安全风险影响尤为显著;2) 人员违规和初始支持结构缺陷是关键的风险耦合因素。研究结果为决策者评估地铁隧道浅埋开挖施工的安全风险提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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