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A Fuzzy AHP-based Decision Support Model for Quantifying Failure Risk of Excavation Work

机译:基于模糊层次分析法的基坑工程失误风险量化决策支持模型

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In recent years, excavation work of high-rise buildings has been becoming increasingly complex in the congested urban areas and frequently exposed to substantial hazards, impediment to safety as well as financial loses. For these reasons, advanced sensor-based systems have been used to accurately monitor and diagnose the failure risk of an excavation work; however, it is often tricky to anticipate and assess the impacts of changeable variables, such as human factors, site conditions, material loadings, and mobile equipment, because of the lack of proper tools to explain the unforeseen phenomena. This study proposed a decision support model to concretize effectively experts' and practitioners' subjectivities and to quantify the failure risk. The model is fundamentally constructed on fuzzy analytic hierarchy process, which weights the environmental influences that can derive a failure. The outcomes are used as an input for fuzzy comprehensive operations to compute the quantitative failure risk. Three illustrative cases have been examined to explain the capabilities of the proposed model. The results have shown the possibility that the model can be helpful for developing safety precautions with a warning signal during the planning and controlling stages of a new or ongoing excavation work.
机译:近年来,在拥挤的城市地区,高层建筑的开挖工作变得越来越复杂,并经常遭受重大危害,安全隐患和经济损失。由于这些原因,先进的基于传感器的系统已被用来精确地监视和诊断挖掘工作的失败风险。但是,由于缺乏解释意外现象的适当工具,因此预测和评估可变变量(例如人为因素,工地条件,材料负荷和移动设备)的影响通常很棘手。这项研究提出了一个决策支持模型,以有效地具体化专家和从业者的主观性并量化失败风险。该模型从根本上建立在模糊的层次分析法上,该过程对可能导致故障的环境影响进行加权。结果用作模糊综合操作的输入,以计算定量故障风险。考察了三个说明性案例以解释所提出模型的功能。结果表明,该模型可能有助于在新的或正在进行的挖掘工作的规划和控制阶段开发带有警告信号的安全预防措施。

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