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Attenuation of strong earthquake ground motion -Ⅰ: Dependence on geology along the wave path from the Hindu Kush subduction to Western Himalaya

机译:强烈地震地震动的衰减-Ⅰ:从兴都库什俯冲到喜马拉雅山沿波路径的地质学依赖性

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摘要

The common approach to describing the attenuation of strong earthquake ground motion has been in terms of a variable that measures the length of the wave path between the earthquake source and the recording site. Although in some published empirical scaling equations, soil and geological conditions at the recording site also have been included via simple site-specific parameters, however, with few exceptions, the geology along the wave propagation path has been generally ignored. This has resulted in excessive residuals of predicted amplitudes and increases the uncertainty in the end results namely, prediction of design amplitudes for earthquake-resistant structure design. In this paper, we describe one example in which the dependence of attenuation equations on the geology can be demonstrated due to a clear separation in the location of contributing earthquake sources and the associated differences in the geological environment along the wave paths. Our example shows the advantages of including a geologic description along the path of seismic waves and thus design amplitude predictions can be developed more realistically and with certainty for a given region.
机译:描述强地震地震动衰减的常用方法是使用变量来测量地震源与记录地点之间的波道长度。尽管在一些已发布的经验比例方程中,记录站点的土壤和地质条件也已通过特定于站点的简单参数包括在内,但是除少数例外,沿波传播路径的地质通常被忽略。这导致了预测振幅的过多残差,并增加了最终结果的不确定性,即最终结果,即抗震结构设计的设计振幅的预测。在本文中,我们描述了一个示例,在该示例中,由于沿地震波路径造成的地震源位置和相关地质环境存在明显差异,因此可以证明衰减方程对地质的依赖性。我们的示例显示了沿地震波路径包括地质描述的优势,因此可以针对给定区域更加实际且确定地开发设计振幅预测。

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