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首页> 外文期刊>Bulletin of the Seismological Society of America >Simulation of seismic-wave propagation through geometrically complex basins: The Dead Sea basin
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Simulation of seismic-wave propagation through geometrically complex basins: The Dead Sea basin

机译:地震波在几何复杂盆地中传播的模拟:死海盆地

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The Dead Sea Transform (DST) is the source for some of the largest earthquakes in the eastern Mediterranean. The seismic hazard presented by the DST threatens the Israeli, Palestinian, and Jordanian populations alike. Several deep and structurally complex sedimentary basins are associated with the DST. These basins are up to 10 km deep and typically bounded by active fault zones. The low seismicity of the DST, the sparse seismic network, and limited coverage of sedimentary basins result in a critical knowledge gap. Therefore, it is necessary to complement the limited instrumental data with synthetic data based on computational modeling, in order to study the effects of earthquake ground motion in these sedimentary basins. In this research we performed a 2D ground-motion analysis in the Dead Sea Basin (DSB) using a finite-difference code. Cross sections transecting the DSB were compiled for wave propagation simulations. Results indicate a complex pattern of groundmotion amplification affected by the geometric features in the basin. To distinguish between the individual contributions of each geometrical feature in the basin, we developed a semiquantitative decomposition approach. This approach enabled us to interpret the DSB results as follows: (1) Ground-motion amplification as a result of resonance occurs basin-wide due to a high impedance contrast at the base of the uppermost layer; (2) Steep faults generate a strong edge-effect that further amplifies ground motions; (3) Sub-basins cause geometrical focusing that may significantly amplify ground motions; and (4) Salt diapirs diverge seismic energy and cause a decrease in ground-motion amplitude.
机译:死海变换(DST)是东地中海一些最大地震的来源。夏令时带来的地震危险同样威胁着以色列,巴勒斯坦和约旦人民。 DST与几个深部和结构复杂的沉积盆地有关。这些盆地深达10 km,通常以活动断层带为界。 DST的低地震活动性,稀疏的地震网络以及有限的沉积盆地覆盖范围导致了严重的知识鸿沟。因此,有必要用基于计算模型的综合数据来补充有限的仪器数据,以研究这些沉积盆地中地震地震动的影响。在这项研究中,我们使用有限差分代码在死海盆地(DSB)中进行了2D地面运动分析。横切DSB的横截面被编译用于波传播模拟。结果表明,受盆地几何特征影响的地震动放大的复杂模式。为了区分盆地中每个几何特征的个体贡献,我们开发了一种半定量分解方法。这种方法使我们能够将DSB结果解释如下:(1)由于最上层底部的高阻抗对比度,共振引起的地震动放大发生在整个盆地。 (2)陡峭的断层产生强烈的边缘效应,进一步加剧了地面运动; (3)子流域引起几何聚焦,这可能会大大放大地面运动; (4)盐底物发散地震能量,使地震动振幅减小。

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