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首页> 外文期刊>Annals Of Geophysics >Spatial Correlation of Peak Ground Motions and Pseudo-Spectral Acceleration Based on the Sarpol-e-Zahab Mw 7.3, 2017 Earthquake Data
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Spatial Correlation of Peak Ground Motions and Pseudo-Spectral Acceleration Based on the Sarpol-e-Zahab Mw 7.3, 2017 Earthquake Data

机译:基于Sarpol-E-Zahab MW 7.3,2017地震数据的峰接地运动和伪光谱加速的空间相关性

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Ground motion intensity measures and structural responses are correlated in nearby sites. The value of this correlation relies on some parameters such as the local geology and distance between the two sites and the natural period of structures, particularly, when lifeline systems or distributed structures are of concern, the issue becomes more important. In this study, the spatial correlation of peak ground acceleration and Spectral Acceleration are evaluated as a function of inter-site separation distance for the Mw7.3 Sarpol-e-Zahab earthquake. On 12 November 2017 a large earthquake occurred near the western border of Iran. The epicenter of the earthquake was reported at 34.77 N and 45.76 E. Here, 192 pairs of horizontal components from the above-mentioned event and 35 of its larger aftershocks with magnitude ranging from Mw 4.0 to 7.3 are employed to evaluate the intra-event residual correlation by considering two Ground Motion Prediction Equations (GMPEs) proposed by Akkar and Bommer [2010] and Zafarani et al. [2017]. A correlation analysis is carried out through semivariogram as a powerful geostatistical tool. As a skeleton for correlation modeling, a kind of exponential model is used. According to the proposed model, the results show that the overall trend of correlation Range depends on spectral period. The results demonstrate that there is strong spatial correlation in the proposed model obtained from the Sarpol-e- Zahab ground motions. The model provided in this study could be employed in earthquake engineering implements such as Shakemaps [Wald et al., 1999] whenever spatial correlation models are required.
机译:接地运动强度测量和结构响应在附近的遗址相关。这种相关性的值依赖于诸如两个站点之间的局部地质和距离和结构周期之间的一些参数,特别是当生命线系统或分布式结构是关注的时,问题变得更加重要。在该研究中,峰接地加速度和光谱加速的空间相关性被评价为MW7.3 Sarpol-E-Zahab地震的场地间分离距离的函数。 2017年11月12日,伊朗西部边境发生了大地震。在34.77 n和45.76e中报道了地震的震中。这里,采用来自上述事件的192对水平组分,其较大的余震中的35个具有从MW 4.0至7.3的幅度范围的幅度范围内评估了事件内残留物通过考虑Akkar和Bommer提出的两个地面运动预测等式(GMPE)来相关[2010]和Zafarani等人。 [2017]。通过半血管造影作为强大的地统计工具进行相关分析。作为用于相关建模的骨架,使用一种指数模型。根据所提出的模型,结果表明相关范围的总体趋势取决于光谱周期。结果表明,从Sarpol-e-Zahab地面运动中获得的拟议模型中存在强的空间相关性。本研究中提供的模型可以在诸如Shakemaps [Wald等,1999]的地震工程工具中使用,每当需要空间相关模型时。

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