China Safety Science Journal ›› 2023, Vol. 33 ›› Issue (8): 205-211.doi: 10.16265/j.cnki.issn1003-3033.2023.08.2146

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Water quality safety risk assessment method for water supply network in mountainous cities

WANG Ying1,2(), WANG Pu2,**(), WANG Zixuan2,3, WANG Fengqing4, WANG Liangchao4, ZHANG Jin5   

  1. 1 General Architectural Planning and Design Research Institute Co., Ltd., Chongqing University, Chongqing 400044, China
    2 College of Environment and Ecology, Chongqing University, Chongqing 400045,China
    3 Sichuan Shudao Urban & Rural Investment Group Co., Ltd. Chengdu Sichuan 610041, China
    4 Chongqing Water Group Co., Ltd.,Chongqing 400000,China
    5 Yangtze Institute for Conservation and Development, Hohai University, Nanjing Jiangsu 210098,China
  • Received:2023-03-08 Revised:2023-06-07 Online:2023-10-08 Published:2024-02-28
  • Contact: WANG Pu

Abstract:

In order to deal with the water pollution incidents of the water supply network in a timely and effective manner and reduce the harm caused by water pollution of the water supply network, taking the water quality safety of water supply network as the breakthrough point, the factors affecting the water quality of the water supply network were systematically analyzed, and the comprehensive evaluation system of water quality safety risk of urban water supply network nodes was constructed. FAHP was used to quantitatively calculate the influencing factors of hydraulic, water quality, pipeline and location, and the evaluation weight matrix W was obtained. Combined with the basic data of some water supply networks in a district of Chongqing, the Epanet and 1stOpt models were coupled to realize the quasi-dynamic simulation of the hydraulic and water quality conditions of the water supply network in this area, and then the water quality risk index of each node of the water supply network was obtained. The evaluation results show that the water quality risk indexes of 127 nodes in the water supply network of a district in Chongqing are 0.196, 0.286,…, 0.137 and 0.420, among which the low, medium and high-risk nodes account for 88.2%, 7.9% and 3.9% of the total nodes respectively. This method can consider the influence factors of hydraulic, water quality, pipeline and location at the same time, and quantitatively evaluate the water quality safety risk of each node in the water supply network, which can solve the problem that it is difficult to quantitatively evaluate the water quality safety of the current water supply network.

Key words: mountain city, water supply network, water quality safe, risk assessment, fuzzy analytic hierarchy process (FAHP)