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作 者:侯本伟[1] 程雪 缪惠全 韩俊艳[1] 吴珊[1] HOU Benwei;CHENG Xue;MIAO Huiquan;HAN Junyan;WU Shan(Faculty of Architecture,Civil and Transportation Engineering,Beijing University of Technology,Beijing 100124,China)
出 处:《防灾减灾工程学报》2024年第4期839-848,共10页Journal of Disaster Prevention and Mitigation Engineering
基 金:国家自然科学基金项目(51978023)资助。
摘 要:基于水力模型计算的管网供水量满足率(SSIQ)指标,是评估供水管网震后性能的常用指标。在供水管网抗震改造优化模型中,若采用SSIQ表示优化目标函数,优化求解需进行大量水力模型计算,计算耗时很长。为减小管网抗震改造优化模型的计算量,对节点流量韧性指标(FR)进行了改进,增加了管道破坏漏水能量损失的影响项,提出了一种管网能量指标(Energy Resilience, ER)表示震后管网性能;以ER指标作为SSIQ的代理指标,用于量化抗震改造优化模型的目标函数。仅通过管道地震失效概率、管网震前正常运行工况的水力参数计算ER指标,不必进行震后管网水力模型计算,以期提升优化模型计算效率。以供水管网震后性能最大化和改造费用最小化为目标,以管道抗震改造措施为优化变量,建立了管网抗震改造多目标优化模型,并比较了ER指标、FR指标以及两个拓扑代理指标的替代效果。案例管网应用结果表明,ER指标与SSIQ指标相关系数呈现强相关性,基于ER指标的优化方案与基于SSIQ指标的优化方案的差异小于3%,ER指标优化模型计算时间不足SSIQ指标优化模型计算时间的1%。The system serviceability index of quantity(SSIQ),calculated based on hydraulic models,is a widely used indicator to evaluate the post-seismic performance of water distribution systems(WDS).However,using SSIQ as the objective function in seismic retrofit optimization models for WDS requires extensive hydraulic calculations,leading to time-consuming computational burden.To reduce this burden,the node flow resilience(FR)indicator was improved by incorporating the impact of pipeline breakage and leakage energy loss,and a network energy indicator,energy resilience(ER),was proposed to represent the post-seismic performance of WDS.ER served as a proxy for SSIQ to quantify the objective function of a seismic retrofit optimization model.This indicator could be calculat-ed without the need for post-seismic hydraulic model calculations,which was achieved by using only the seismic failure probability of pipelines and the hydraulic parameters of WDS under normal opera-tions,thereby improving the computational efficiency of the optimization model.With the objectives of maximizing the post-seismic performance and minimizing the retrofit costs of WDS,a multi-objec-tive optimization model for pipeline seismic retrofitting was established,with pipeline seismic retrofit measures as optimization variables.The performance of ER,FR,and two topological proxy indica-tors were compared.Network application results in the case study indicated that ER showed strong correlation with SSIQ,with the difference between the optimization schemes based on ER and that based on SSIQ being less than 3%.The computation time for the ER optimization model was less than 1%of that for SSIQ optimization model.
关 键 词:供水管网 地震破坏 性能评估 优化改造 代理指标
分 类 号:P315.9[天文地球—地震学] TU991.33[天文地球—固体地球物理学]
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