首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Deterministic earthquake scenario for the Basel area: Simulating strong motions and site effects for Basel, Switzerland
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Deterministic earthquake scenario for the Basel area: Simulating strong motions and site effects for Basel, Switzerland

机译:巴塞尔地区的确定性地震情景:模拟瑞士巴塞尔的强烈运动和场地影响

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The Basel earthquake of 18 October 1356 is considered one of the most serious earthquakes in Europe in recent centuries (I 0 = IX, M ≈ 6.5–6.9). In this paper we present ground motion simulations for earthquake scenarios for the city of Basel and its vicinity. The numerical modeling combines the finite extent pseudodynamic and kinematic source models with complex local structure in a two-step hybrid three-dimensional (3-D) finite difference (FD) method. The synthetic seismograms are accurate in the frequency band 0–2.2 Hz. The 3-D FD is a linear explicit displacement formulation using an irregular rectangular grid including topography. The finite extent rupture model is adjacent to the free surface because the fault has been recognized through trenching on the Reinach fault. We test two source models reminiscent of past earthquakes (the 1999 Athens and the 1989 Loma Prieta earthquake) to represent M w ≈ 5.9 and M w ≈ 6.5 events that occur approximately to the south of Basel. To compare the effect of the same wave field arriving at the site from other directions, we considered the same sources placed east and west of the city. The local structural model is determined from the area's recently established P and S wave velocity structure and includes topography. The selected earthquake scenarios show strong ground motion amplification with respect to a bedrock site, which is in contrast to previous 2-D simulations for the same area. In particular, we found that the edge effects from the 3-D structural model depend strongly on the position of the earthquake source within the modeling domain.
机译:1356年10月18日的巴塞尔地震被认为是近几个世纪以来欧洲最严重的地震之一(I 0 = IX,M≈6.5-6.9)。在本文中,我们介绍了巴塞尔市及其附近地震情境的地面运动模拟。数值建模通过两步混合三维(3-D)有限差分(FD)方法将有限范围的拟动力和运动学源模型与复杂的局部结构相结合。合成地震图在0–2.2 Hz频带内是准确的。 3-D FD是使用包含地形的不规则矩形网格的线性显式位移公式。有限程度的破裂模型与自由表面相邻,因为已经通过在Reinach断层上开槽来识别断层。我们测试了两个让人联想起过去地震(1999年雅典地震和1989年洛马普里埃塔地震)的震源模型,以表示大约在巴塞尔南部发生的M w≈5.9和M w≈6.5事件。为了比较同一波场从其他方向到达站点的影响,我们考虑了位于城市东部和西部的相同波源。局部结构模型是根据该地区最近建立的P和S波速结构确定的,包括地形。所选的地震场景显示了相对于基岩场地的强烈地面运动放大,这与之前针对相同区域的2D模拟相反。特别是,我们发现3-D结构模型的边缘效应在很大程度上取决于建模区域内震源的位置。

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