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Analysis of faulting destruction and water supply pipeline damage from the first mainshock of the February 6,2023 Türkiye earthquake doublet 被引量:2
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作者 Xiaoqing Fan Libao Zhang +2 位作者 juke wang Yefei Ren Aiwen Liu 《Earthquake Science》 2024年第1期78-90,共13页
In 2023,two consecutive earthquakes exceeding a magnitude of 7 occurred in Türkiye,causing severe casualties and economic losses.The damage to critical urban infrastructure and building structures,including highw... In 2023,two consecutive earthquakes exceeding a magnitude of 7 occurred in Türkiye,causing severe casualties and economic losses.The damage to critical urban infrastructure and building structures,including highways,railroads,and water supply pipelines,was particularly severe in areas where these structures intersected the seismogenic fault.Critical infrastructure projects that traverse active faults are susceptible to the influence of fault movement,pulse velocity,and ground motions.In this study,we used a unique approach to analyze the acceleration records obtained from the seismic station array(9 strong ground motion stations)located along the East Anatolian Fault(the seismogenic fault of the MW7.8 mainshock of the 2023 Türkiye earthquake doublet).The acceleration records were filtered and integrated to obtain the velocity and displacement time histories.We used the results of an on-site investigation,jointly conducted by China Earthquake Administration and Türkiye’s AFAD,to analyze the distribution of PGA,PGV,and PGD recorded by the strong motion array of the East Anatolian Fault.We found that the maximum horizontal PGA in this earthquake was 3.0 g,and the maximum co-seismic surface displacement caused by the East Anatolian Fault rupture was 6.50 m.As the fault rupture propagated southwest,the velocity pulse caused by the directional effect of the rupture increased gradually,with the maximum PGA reaching 162.3 cm/s.We also discussed the seismic safety of critical infrastructure projects traversing active faults,using two case studies of water supply pipelines in Türkiye that were damaged by earthquakes.We used a three-dimensional finite element model of the PE(polyethylene)water pipeline at the Islahiye State Hospital and fault displacement observations obtained through on-site investigation to analyze pipeline failure mechanisms.We further investigated the effect of the fault-crossing angle on seismic safety of a pipeline,based on our analysis and the failure performance of the large-diameter Thames Water pipeline during the 1999 Kocaeli earthquake.The seismic method of buried pipelines crossing the fault was summarized. 展开更多
关键词 Türkiye earthquake fault displacement near-fault ground motion velocity pulse water supply pipeline
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地震模拟振动台九子台阵系统的安装与调试
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作者 王巨科 高春华 张硕玉 《动力系统与控制》 2016年第1期11-17,共7页
面对到地震频发的危害,指出了地震模拟振动台试验是结构抗震试验的研究和发展方向。简要概括了地震模拟振动台的发展历史和现状。基于近年来振动台台阵系统已成为大型空间结构、管道、多跨桥梁等细长结构的抗震试验研究与理论研究重要... 面对到地震频发的危害,指出了地震模拟振动台试验是结构抗震试验的研究和发展方向。简要概括了地震模拟振动台的发展历史和现状。基于近年来振动台台阵系统已成为大型空间结构、管道、多跨桥梁等细长结构的抗震试验研究与理论研究重要的试验手段,以北京工业大学九子台阵系统为例,对九子台阵系统的系统组成、功能特点、安装方法、调试进行总结,并进一步说明台阵系统控制的特点和值得研究的内容。希望对地震模拟振动台台阵试验技术的发展有一定的参考价值。 展开更多
关键词 振动台台阵 功能调试 系统控制
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