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Seismic microzonation of Sarpol-e-zahab after Mw 7.3 2017 Iran earthquake: 1D-equivalent linear approach

机译:MW 7.3 2017年伊朗地震后Sarpol-e-Zahab的地震微处理:1D等同的线性方法

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摘要

The impacts of Iran's recent and destructive earthquake of Mw 7.3 November 12 2017, and its important subsequent events are investigated at Sarpol-e-zahab by means of 1D-equivalent linear site response analyses. Local damages at Sarpol-e-zahab highlighted the role of seismic microzonation in seismic risk reduction and damage prevention plans for future events. Hence, the main goals of this study are set to provide maps for amplification factors and shaking levels of the city as well as validating design-basis earthquake loads for buildings and structures of the national code of IRSt2800. This is achieved by deconvolution of the strong motions recorded by ISMN-SPZ as the closest station to the epicenter of Mw 7.3 earthquake and finding the two horizontal bedrock motions and subsequently, convolution of the horizontal bedrock motions to find the ground motions at 38 points across the city. The results of seismic site response analyses have provided very instructive information for rehabilitation of the existing buildings and future constructions as well as seismic vulnerability assessment of buildings during earthquakes. Furthermore, it provides an unprecedented research in Iran of a complete seismic microzonation at urban scale after an earthquake and a successful application of seismic microzonation at urban area with inadequate number of strong motion recording stations.
机译:通过1D等效线性场地反应分析,对伊朗最近于2017年11月12日发生的7.3兆瓦破坏性地震及其重要后续事件的影响进行了调查。Sarpol-e-zahab的局部破坏突出了地震微区划在未来地震风险降低和损害预防计划中的作用。因此,本研究的主要目标是提供城市放大系数和震动水平的地图,以及验证国家规范IRSt2800中建筑物和结构的设计基准地震荷载。这是通过对ISMN-SPZ记录的强震进行反褶积来实现的,ISMN-SPZ是距离7.3兆瓦地震震中最近的台站,并找到两个水平基岩运动,然后对水平基岩运动进行卷积,以找到全市38个点的地面运动。地震场地反应分析的结果为现有建筑物和未来建筑物的修复以及地震期间建筑物的地震易损性评估提供了非常有指导意义的信息。此外,它还为伊朗在地震后在城市范围内进行完整的地震微区划提供了前所未有的研究,并在强震记录站数量不足的城市地区成功应用了地震微区划。

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