Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy

In order to comprehensively and objectively evaluate the risks faced by the underground comprehensive pipe corridor with large investment, wide coverage and long operation cycle, this paper takes a pipe corridor in Beijing as the object, based on the whole life cycle theory, identifies the risk fact...

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Main Author: Zhang Xinwen
Format: Article
Language:English
Published: Emergency Management Press 2022-06-01
Series:矿业科学学报
Subjects:
Online Access:http://kykxxb.cumtb.edu.cn/cn/article/doi/10.19606/j.cnki.jmst.2022.03.013
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author Zhang Xinwen
author_facet Zhang Xinwen
author_sort Zhang Xinwen
collection DOAJ
description In order to comprehensively and objectively evaluate the risks faced by the underground comprehensive pipe corridor with large investment, wide coverage and long operation cycle, this paper takes a pipe corridor in Beijing as the object, based on the whole life cycle theory, identifies the risk factors in six stages of the whole life cycle of the pipe corridor, and establishes a risk index system consisting of 6 second-level and 43 third-level risk indicators. The comprehensive evaluation model of pipeline corridor risk based on AHP and Fuzzy was established, and the results were verified by weighted distribution method. The research results show that the overall risk of the whole life cycle of the studied pipe gallery belongs to the medium risk, of which the risk of abandonment stage is the highest, followed by construction and completion stage, operation stage, design stage, bidding stage and decision-making stage, and put forward targeted management measures.
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spelling doaj.art-6f02ac85b280407aa250d244ca4819972022-12-22T04:34:49ZengEmergency Management Press矿业科学学报2096-21932022-06-017338138810.19606/j.cnki.jmst.2022.03.013Research on life cycle risk assessment of utility tunnel project base on AHP-FuzzyZhang Xinwen0School of Mechanics and Civil Engineering, China University of Mining and Technology-Beijing, Beijing 100083In order to comprehensively and objectively evaluate the risks faced by the underground comprehensive pipe corridor with large investment, wide coverage and long operation cycle, this paper takes a pipe corridor in Beijing as the object, based on the whole life cycle theory, identifies the risk factors in six stages of the whole life cycle of the pipe corridor, and establishes a risk index system consisting of 6 second-level and 43 third-level risk indicators. The comprehensive evaluation model of pipeline corridor risk based on AHP and Fuzzy was established, and the results were verified by weighted distribution method. The research results show that the overall risk of the whole life cycle of the studied pipe gallery belongs to the medium risk, of which the risk of abandonment stage is the highest, followed by construction and completion stage, operation stage, design stage, bidding stage and decision-making stage, and put forward targeted management measures.http://kykxxb.cumtb.edu.cn/cn/article/doi/10.19606/j.cnki.jmst.2022.03.013utility tunnelrisk evaluationlife cyclecomprehensive evaluation
spellingShingle Zhang Xinwen
Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy
矿业科学学报
utility tunnel
risk evaluation
life cycle
comprehensive evaluation
title Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy
title_full Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy
title_fullStr Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy
title_full_unstemmed Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy
title_short Research on life cycle risk assessment of utility tunnel project base on AHP-Fuzzy
title_sort research on life cycle risk assessment of utility tunnel project base on ahp fuzzy
topic utility tunnel
risk evaluation
life cycle
comprehensive evaluation
url http://kykxxb.cumtb.edu.cn/cn/article/doi/10.19606/j.cnki.jmst.2022.03.013
work_keys_str_mv AT zhangxinwen researchonlifecycleriskassessmentofutilitytunnelprojectbaseonahpfuzzy