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Framework for Seismic Damage and Renewal Cost Analysis of Buried Water Pipelines

机译:埋藏水管道抗震损伤及更新成本分析的框架

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摘要

Buried water pipelines suffer extensive damages when subjected to earthquake loading. Probable seismic damage of buried pipelines is typically estimated based on empirical analyses, where the effects of corrosion deterioration are often neglected. Corrosion-induced deterioration weakens the pipeline resistance capacity, which in turn significantly reduces the seismic reliability of water distribution systems (WDS). Improved seismic damage estimation of buried water pipelines needs to consider the effect of corrosion on their seismic performance to assist with the development of an effective and efficient renewal strategy. Hence, the first part of this study improves a current US guideline on seismic repair rate (RR) estimation, based on the observed effects of corrosion on pipeline damages during a recent earthquake (2014 Napa earthquake). Then, a renewal strategy is proposed that addresses the vulnerability of pipelines from the topological viewpoint in addition to the condition index and failure impact index commonly used in practice decisions. In addition, water distribution networks are often large and complex, which leads to considerable computational time and cost for seismic risk assessment. In this study, a computationally efficient methodology named SeismoPi is developed using Python-based open-source libraries for estimating the seismic damage of buried pipelines. The methodology is capable of performing scenario-based seismic damage analysis of complex buried water networks, identifying critical segments and system connectivity, and estimating the renewal cost. The method presents the interactive outputs on maps so that decision makers can easily visualize the results and identify the riskiest segments that need to be rehabilitated. SeismoPi assists decision makers in developing WDS renewable strategies that account for the effects of corrosion deterioration on their seismic performance. Applications of the proposed framework are demonstrated on a few small- to large-sized water distribution systems. (c) 2020 American Society of Civil Engineers.
机译:埋藏的水管在受地震荷载时遭受了广泛的损害。通常基于经验分析估计埋地管道的可能地震损伤,其中腐蚀劣化的影响通常被忽略。腐蚀引起的劣化削弱了管道电阻容量,这又显着降低了水分配系统(WDS)的地震可靠性。改善埋地水管的地震损伤估计需要考虑腐蚀对其地震性能的影响,以协助开发有效和有效的更新策略。因此,本研究的第一部分基于最近地震期间的腐蚀对管道损害的腐蚀的影响,提高了当前的地震修复率(RR)估计准则。(2014年纳帕地震)。然后,提出了一种更新的策略,除了在实践决策中常用的条件指数和失败的影响指数之外,还提出了拓扑观点的漏洞。此外,水分配网络通常很大且复杂,这导致地震风险评估的相当大的计算时间和成本。在本研究中,使用基于Python的开源库开发了名为Seismopi的计算有效方法,用于估计埋地管道的地震损坏。该方法能够对复杂的埋藏水网络进行基于场景的地震损伤分析,识别临界段和系统连接,并估算更新成本。该方法介绍了地图上的交互式输出,以便决策者可以轻松地可视化结果并识别需要恢复的最风险的段。 Seismopi协助决策者制定WDS可再生策略,该策略考虑了腐蚀恶化对其地震性能的影响。提出的框架的应用在一些小于大型水分配系统上进行了证明。 (c)2020年美国土木工程师协会。

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  • 来源
    《Journal of Pipeline Systems Engineering and Practice》 |2020年第4期|04020038.1-04020038.20|共20页
  • 作者单位

    Case Western Reserve Univ Dept Civil Engn Cleveland OH 44106 USA;

    Case Western Reserve Univ Dept Civil Engn Cleveland OH 44106 USA;

    Univ Alabama Dept Civil & Environm Engn Huntsville AL 35899 USA;

    Case Western Reserve Univ Dept Civil Engn Cleveland OH 44106 USA;

    Case Western Reserve Univ Dept Civil Engn Cleveland OH 44106 USA;

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