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Multi-agent based safety computational experiment system for shield tunneling projects

机译:基于多功能盾构隧道工程的安全计算实验系统

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摘要

Purpose: In shield tunneling projects, human, shield machine and underground environment are tightly coupled and interacted. Accidents often occur under dysfunctional interactions among them. Therefore, this paper aims to develop a multi-agent based safety computational experiment system (SCES) and use it to identify the main influential factors of various aspects of human, shield machine and underground environment.Design/methodology/approach: The methods mainly comprised computational experiments and multi-agent technologies. First, a safety model with human-machine-environment interaction consideration is developed through the multi-agent technologies. On this basis, SCES is implemented. Then computational experiments are designed and performed on SCES for analyzing safety performance and identifying the main influential factors.Findings: The main influential factors of two common accidents are identified. For surface settlement, the main influential factors are ranked as experience, soil density, soil cohesion, screw conveyor speed and thrust force in descending order of influence levels; for mud cake on cutter, they are ranked as soil cohesion, experience, cutter speed and screw conveyor speed. These results are consistent with intuition and previous studies and demonstrate the applicability of SCES.Practical implications: The proposed SCES provides comprehensive risk factor identification for shield tunneling projects and also insights to support informed decisions for safety management.Originality/value: A safety model with human-machine-environment interaction consideration is developed and computational experiments are used to analyze the safety performance. The novel method and model could contribute to system-based safety research and promote systematic understanding of the safety performance of shield tunneling projects.
机译:目的:在盾牌隧道项目中,人类,屏蔽机和地下环境紧密耦合并互动。事故经常发生在它们之间的功能失调相互作用下。因此,本文旨在开发基于多助手的安全计算实验系统(SCES),并使用它来确定人类,盾牌机和地下环境的各个方面的主要影响因素.Design/Methodology/Approach:主要包括的方法计算实验和多功能技术。首先,通过多功能技术技术开发了具有人机环境交互考虑的安全模型。在此基础上,实施SCES。然后在SCES上设计和执行计算实验,用于分析安全性能并识别主要的影响因素。特写:鉴定了两个常见事故的主要影响因素。对于表面沉降,主要的影响因素被排名为经验,土壤密度,土壤粘合,螺杆输送机速度和螺杆输送速度和推力级,以降低的影响水平的顺序;对于切割器上的泥蛋糕,它们被排名为土着凝聚力,经验,刀具速度和螺旋式传送速度。这些结果与直觉和先前的研究一致,并展示了SCES的适用性。实践意义:拟议的SCE为盾牌隧道项目提供全面的风险因素识别,并有助于支持安全管理的知情决策。符合安全模式:安全模型开发了人机环境相互作用考虑,使用计算实验来分析安全性能。新型方法和模型可以促进基于系统的安全研究,促进对盾构隧道工程安全性能的系统理解。

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