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EMPIRICAL GROUND MOTION MODEL FOR SHALLOW CRUSTAL EARTHQUAKES IN ACTIVE TECTONIC ENVIRONMENTS DEVELOPED FOR THE NGA PROJECT

机译:为NGA项目开发的活动构造环境中浅层地壳地震的经验地面运动模型

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We present a new empirical ground motion model for PGA, PGV, PGD and 5% damped linear elastic response spectra for periods ranging from 0.01-10 s. The model was developed as part of the PEER Next Generation Attenuation (NGA) project. We used a subset of the PEER NGA database for which we excluded recordings and earthquakes that were believed to be inappropriate for estimating free-field ground motions from shallow earthquake mainshocks in active tectonic regimes. We developed relations for both the median and standard deviation of the geometric mean horizontal component of ground motion that we consider to be valid for magnitudes ranging from 4.0 up to 7.5-8.5 (depending on fault mechanism) and distances ranging from 0-200 km. The model explicitly includes the effects of magnitude saturation, magnitude-dependent attenuation, style of faulting, rupture depth, hanging-wall geometry, linear and nonlinear site response, 3-D basin response, and inter-event and intra-event variability. Soil nonlinearity causes the intra-event standard deviation to depend on the amplitude of PGA on reference rock rather than on magnitude, which leads to a decrease in aleatory uncertainty at high levels of ground shaking for sites located on soil.
机译:我们为PGA,PGV,PGD和5%阻尼线性弹性响应谱提供了一个新的经验地面运动模型,周期为0.01-10 s。该模型是PEER下一代衰减(NGA)项目的一部分。我们使用了PEER NGA数据库的一个子集,在该子集中,我们排除了记录和地震,这些记录和地震被认为不适合估计活跃构造条件下浅层地震主震的自由场地震动。我们开发了地面运动的几何平均水平分量的中值和标准偏差的关系,我们认为这些关系对范围从4.0到7.5-8.5(取决于断层机制)和距离在0-200 km之间有效。该模型明确包括幅度饱和,幅度衰减,断层类型,破裂深度,吊壁几何形状,线性和非线性场地响应,3-D盆地响应以及事件间和事件内变化的影响。土壤的非线性导致事件内标准偏差取决于参考岩石上PGA的幅度而不是幅度,这导致位于土壤上的高水平地面震动时的不确定不确定性降低。

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