Prioritizing water distribution pipe renewal based on seismic risk and construction cost

IF 0.8 4区 工程技术 Q4 ENGINEERING, CHEMICAL
H. Youn, H. Oh, Dooil Kim
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引用次数: 0

Abstract

Natural disasters such as earthquakes can cause damage to water distribution pipe, resulting in water interruption. For a contingency plan for earthquakes, calculating the possibility of failure and the consequence of failure are necessary. The empirical formula for the vulnerability of water distribution pipe after earthquake was developed considering deterioration effect with aging in this study. The degree of water outage was assumed to be a consequence of failure. The earthquake risk with pipe aging was obtained through the product of them. Although the risk alone might be used to prioritize pipe network improvement, it was recommended to consider the construction cost as well. It was also proposed to use a score-based method by graphically tabulating construction cost and risk. The methodology proposed was demonstrated on a real-scale water distribution pipe in Korea. The improved prioritization using the scoring method will help create a future earthquake preparedness plan for a water distribution system.
根据地震风险和施工成本优先考虑配水管更新
地震等自然灾害会对配水管造成破坏,造成供水中断。对于一个地震应急计划,计算失败的可能性和失败的后果是必要的。考虑老化劣化效应,建立了配水管地震后易损性的经验公式。供水中断的程度被认为是故障的后果。通过二者的乘积,得到了管道老化的地震危险性。虽然风险可以单独用于管网改进的优先级,但建议也考虑建设成本。还提出了采用基于分数的方法,将建筑成本和风险图表化。该方法在韩国的一个实际配水管道上进行了验证。使用评分方法改进的优先级排序将有助于为供水系统制定未来的地震准备计划。
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来源期刊
Membrane Water Treatment
Membrane Water Treatment ENGINEERING, CHEMICAL-WATER RESOURCES
CiteScore
1.90
自引率
30.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: The Membrane and Water Treatment(MWT), An International Journal, aims at opening an access to the valuable source of technical information and providing an excellent publication channel for the global community of researchers in Membrane and Water Treatment related area. Specific emphasis of the journal may include but not limited to; the engineering and scientific aspects of understanding the basic mechanisms and applying membranes for water and waste water treatment, such as transport phenomena, surface characteristics, fouling, scaling, desalination, membrane bioreactors, water reuse, and system optimization.
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