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基于AHP及模糊数学评价的特大城市应急地下水源地选址研究

袁伟 张芳 云智汉 张晓周

四川环境2024,Vol.43Issue(6):100-111,12.
四川环境2024,Vol.43Issue(6):100-111,12.DOI:10.14034/j.cnki.schj.2024.06.015

基于AHP及模糊数学评价的特大城市应急地下水源地选址研究

Research on Site Selection of Emergency Water Source in Mega Cities Based on AHP and Fuzzy Mathematics Evaluation

袁伟 1张芳 1云智汉 2张晓周1

作者信息

  • 1. 四川省第一地质大队,成都 610072||四川省地质工程勘察院集团有限公司,成都 610072||自然资源部西部地区地质灾害防治与生态修复技术创新中心,成都 610059
  • 2. 四川省第一地质大队,成都 610072||四川省地质工程勘察院集团有限公司,成都 610072
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摘要

Abstract

Frequent extreme climate events pose a threat to the water security of large cities.The purpose of this paper is to improve the efficiency and suitability of site selection,and ensure that the basic water needs of residents are met in emergency through improving the selection and evaluation methods of emergency water sources.Firstly,the Analytic Hierarchy Process(AHP)was used to analyze the key factors influencing the selection of water sources and determine the weights of these factors.Based on this,further site selection for emergency water source was conducted,and a multi-criteria fuzzy comprehensive evaluation method was used to assess the suitability of the selected sites.The results showed that the three candidate emergency water sources identified through this method significantly improve the efficiency and suitability of site selection,making them suitable as emergency water sources for large cities in Sichuan province.The proposed method overcomes the subjectivity and low efficiency of traditional site selection methods,significantly enhancing the scientific and suitability of site selection.It provides important reference value for selecting emergency water sources for large cities,effectively ensuring water security under extreme climate conditions.

关键词

应急地下水源地/应急供水/城市供水/实施保障

Key words

Emergency groundwater source/emergency water supply/urban water supply/implementation guarantee

分类

资源环境

引用本文复制引用

袁伟,张芳,云智汉,张晓周..基于AHP及模糊数学评价的特大城市应急地下水源地选址研究[J].四川环境,2024,43(6):100-111,12.

基金项目

四川省地质矿产勘查开发局专项项目(SCDZ-DH202302). (SCDZ-DH202302)

四川环境

OACSTPCD

1001-3644

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