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Parameterization of a Composite Attenuation Relation for the Dead Sea Area Based on 3-D Modeling of Elastic Wave Propagation

机译:基于弹性波传播的3-D建模的死海区域复合衰减关系的参数化

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摘要

3-D simulations of elastic wave propagation generated by earthquakes with magnitudes between 5.5 and 7.0 are used to parameterize strong ground motion attenuation relations for the Dead Sea Rift (DSR) graben structure. The results show that standard attenuation relations with an isotropic distance parameter are inadequate for a graben structure with a deep sedimentary trough. A new strategy is devised for the parameterization of attenuation relations in graben structures by looking at the statistical properties of 53 simulated earthquakes of variable magnitudes located at various sites along the western boundary fault of the DSR graben. An exemplary attenuation relation is designed from the synthetics for the 1 Hz spectral acceleration, modifying the Joyner-Boore-type parametrization by adding coefficients suited for three different source-to-sensor configurations: within the graben, beyond the graben and path unaffected by the graben structure.
机译:由5.5级至7.0级地震产生的弹性波传播的3-D模拟用于参数化死海裂谷(DSR)抓取结构的强地面运动衰减关系。结果表明,对于具有较深沉积槽的grab陷结构,具有各向同性距离参数的标准衰减关系是不够的。通过研究位于DSR抓手西边界断层不同位置的53个不同震级的模拟地震的统计特性,设计了一种新的策略来对抓手结构中的衰减关系进行参数化。从1 Hz频谱加速度的合成器设计了一个示例性衰减关系,通过添加适用于三种不同源到传感器配置的系数来修改Joyner-Boore型参数化:在抓斗内,超出抓斗和不受路径影响的路径en的结构。

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