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Effects of local soil conditions on the topographic aggravation of seismic motion: Parametric investigation and recorded field evidence from the 1999 Athens earthquake

机译:当地土壤条件对地震动地形加剧的影响:1999年雅典地震的参数调查和实地证据

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摘要

During the 1999 Athens earthquake, the town of Adàmes, located on the eastern side of the Kifissos river canyon, experienced unexpectedly heavy damage. Despite the particular geometry of the slope that caused significant motion amplification, topography effects alone cannot explain the uneven damage distribution within a 300-m zone parallel to the canyon's crest, which is characterized by a rather uniform structural quality. In this article, we illustrate the important role of soil stratigraphy and material heterogeneity on the topographic aggravation of surface ground motion. For this purpose, we first conduct an extensive time-domain parametric study using idealized stratified profiles and Gaussian stochastic fields to characterize the spatial distribution of soil properties, and using Ricker wavelets to describe the seismic input motion; the results show that both topography and local soil conditions significantly affect the spatial variability of seismic motion. We next perform elastic two-dimensional wave propagation analyses based on available local geotechnical and seismological data and validate our results by comparison with aftershock recordings.
机译:在1999年雅典地震中,位于基菲索斯河峡谷东侧的阿达姆斯镇遭受了意想不到的严重破坏。尽管斜坡的特殊几何形状引起了明显的运动放大,但仅靠地形影响并不能解释平行于峡谷波峰的300米区域内不均匀的破坏分布,其特征是结构质量相当均匀。在本文中,我们说明了土壤地层学和物质异质性在地面地面运动的地形加重中的重要作用。为此,我们首先使用理想的分层剖面和高斯随机场进行广泛的时域参数研究,以表征土壤特性的空间分布,并使用瑞克小波描述地震输入运动。结果表明,地形和当地土壤条件都显着影响地震运动的空间变异性。接下来,我们将基于可用的当地岩土和地震数据进行弹性二维波传播分析,并通过与余震记录进行比较来验证我们的结果。

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