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Ranking of geological risks in mechanized tunneling by using Fuzzy Analytical Hierarchy Process (FAHP)

机译:基于模糊层次分析法的机械化隧道地质风险分级

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摘要

Many variables make foundation conditions unpredicted and uncertain in tunnel and underground constructions which could endanger the safety and adversely impact economy of a project. Evaluating and risk assessment of projects such as mechanized tunneling is necessary to manage and respond to the associated risks, hence, identification of risk factors would be required. In this study by contribution of experienced technicians and use of geological study eight (category) levels of risks are considered. Probability and impact factors are used in the ideal risk analysis. Additionally, in this study ideal and some supplementary factors such as uncertainty of estimates and risk manageability are also addressed. Ranking of risks are determined by Multi-Criteria Decision Making (MCDM) techniques like Fuzzy Analytical Hierarchy Process (FAHP). The present research in Golab tunnel is located in the northwest of Esfahan (Iran), shows that squeezing and face tunnel instability have highest level and gas emissions and clogging of clay have the lowest level of risks. (C) 2015 Elsevier Ltd. All rights reserved.
机译:许多变量使隧道和地下建筑的地基条件无法预测且不确定,这可能会危害安全性并不利地影响项目的经济性。机械化隧道等项目的评估和风险评估对于管理和应对相关风险非常必要,因此,需要识别风险因素。在这项研究中,由经验丰富的技术人员做出贡献并利用地质研究,考虑了八种(类别)风险。概率和影响因子用于理想的风险分析。此外,在这项研究中,还讨论了理想和一些补充因素,例如估计的不确定性和风险可管理性。风险等级由多准则决策(MCDM)技术确定,例如模糊分析层次过程(FAHP)。目前对Golab隧道的研究位于伊朗伊斯法罕(Esfahan)的西北部,表明挤压和面板隧道失稳具有最高水平,瓦斯排放和黏土堵塞的风险最低。 (C)2015 Elsevier Ltd.保留所有权利。

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