王雯悦, 伍颖, 尤潇, 陈朗. 基于改进Borda法与属性识别的山区输气管道地震易损性评价[J]. 油气储运, 2021, 40(11): 1265-1271. DOI: 10.6047/j.issn.1000-8241.2021.11.009
引用本文: 王雯悦, 伍颖, 尤潇, 陈朗. 基于改进Borda法与属性识别的山区输气管道地震易损性评价[J]. 油气储运, 2021, 40(11): 1265-1271. DOI: 10.6047/j.issn.1000-8241.2021.11.009
WANG Wenyue, WU Ying, YOU Xiao, CHEN Lang. Seismic vulnerability assessment of mountainous gas pipelines based on improved Borda method and attribute recognition[J]. Oil & Gas Storage and Transportation, 2021, 40(11): 1265-1271. DOI: 10.6047/j.issn.1000-8241.2021.11.009
Citation: WANG Wenyue, WU Ying, YOU Xiao, CHEN Lang. Seismic vulnerability assessment of mountainous gas pipelines based on improved Borda method and attribute recognition[J]. Oil & Gas Storage and Transportation, 2021, 40(11): 1265-1271. DOI: 10.6047/j.issn.1000-8241.2021.11.009

基于改进Borda法与属性识别的山区输气管道地震易损性评价

Seismic vulnerability assessment of mountainous gas pipelines based on improved Borda method and attribute recognition

  • 摘要: 山区输气管道沿线地形地貌条件复杂,发生地震时所受影响大,研究地震影响下的山区输气管道安全可靠性评价方法对保障天然气供应安全具有重要的战略意义。从地震危险性因素及管道易损性因素入手,提出改进Borda法计算群体决策下指标体系的权重;从逻辑角度将属性识别理论中的多指标综合测度计算方法分为“或”和“与”,提出逻辑关系为“与”的多指标综合测度计算方法,建立山区输气管道地震易损性评价体系。将评价体系应用于四川西部某山区输气管道,引入属性识别理论,结合基础数据与专家打分进行属性识别,得到管段易损性等级。研究成果对预判地震发生时管道高易损性区域并采取相应措施具有参考意义。

     

    Abstract: The areas along the mountainous gas pipelines are complicated in geographic and geomorphic conditions, and thus greatly affected by earthquakes. Therefore, the safety and reliability assessment methods of mountainous gas pipelines under the influence of earthquakes were analyzed, which is of important strategic significance to ensure the safety of natural gas supply. From the prospective of the seismic risk and pipeline vulnerability factors, the method of calculating the weight of the index system under group decision-making with the improved Borda method was put forward. Meanwhile, the calculation methods of multi-index comprehensive measurement mentioned in the attribute recognition theory were divided into the types with "or" and "and" logics. Then, the calculation method of multi-index comprehensive measurement with "and" logics was proposed, and the assessment system for the seismic vulnerability of mountainous gas pipelines was established. In addition, the assessment system was applied to a mountainous gas pipeline in western Sichuan, and by introducing the attribute recognition theory, the attribute recognition was performed with the basic data combined with the expert opinions. In this way, the vulnerability level of the pipeline section was obtained. Generally, the results could provide reference for the prediction of the vulnerable pipeline sections in earthquakes and the development of the appropriate measures.

     

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