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Equations for the estimation of strong ground motions from shallow crustal earthquakes using data from Europe and the Middle East : vertical peak ground acceleration and spectral acceleration

机译:利用欧洲和中东地区的数据估算浅层地壳地震强烈地震动的方程式:垂直峰值地面加速度和频谱加速度

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摘要

This article presents equations for the estimation of vertical strong ground motions caused by shallow crustal earthquakes with magnitudes M w 5 and distance to the surface projection of the fault less than 100km. These equations were derived by weighted regression analysis, used to remove observed magnitude-dependent variance, on a set of 595 strong-motion records recorded in Europe and the Middle East. Coefficients are included to model the effect of local site effects and faulting mechanism on the observed ground motions. The equations include coefficients to model the observed magnitude-dependent decay rate. The main findings of this study are that: short-period ground motions from small and moderate magnitude earthquakes decay faster than the commonly assumed 1/r, the average effect of differing faulting mechanisms is similar to that observed for horizontal motions and is not large and corresponds to factors between 0.7 (normal and odd) and 1.4 (thrust) with respect to strike-slip motions and that the average long-period amplification caused by soft soil deposits is about 2.1 over those on rock sites.
机译:本文提出了方程,用于估算由浅地壳地震引起的垂直强地震动,震级为M w 5且距断层表面投影的距离小于100 km。这些方程式是通过加权回归分析得出的,用于消除在欧洲和中东记录的595组强运动记录中观察到的幅度相关方差。包括系数以模拟局部场地效应和断层机制对观测到的地面运动的影响。这些方程式包括对观察到的幅度相关衰减率建模的系数。这项研究的主要发现是:中小地震引起的短时地震动衰减比通常假定的1 / r快,不同断层机制的平均作用与水平运动所观察到的相似,并且不大。对应于走滑运动的系数在0.7(正常和奇数)和1.4(推力)之间,并且由软土沉积物引起的平均长周期放大率比岩石站点的平均长约2.1。

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