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Profound 2-D amplification effects for sites with soft soil underlying stiff soil

机译:硬土下的软土场地的二维放大效果

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For a 30m deep 1-D soil site of about 0.5s period with a soft soil layer at the surface overlying a stiff layer above bedrock, the short-period amplification characteristics are similar to those of the 1-D model with a single soft soil layer, in that the cross-over point separating the amplification and deamplification range is about 0.3-0.5g for peak ground accelerations (PGA). However, for a soil site with a soft layer between a stiff surface layer and the underlying bedrock, the short-period amplification ratios are drastically reduced from those of a site with a uniform soft soil layer or a site with a soft soil layer at the surface, with a cross-over point for PGA amplification ratios as small as 0.1-0.2g, depending on the thickness of the stiff soil layer. Significant differences between these two 1-D models are observed at periods up to 1.0s. We investigate the 2-D effect from a 2-D soil basin with identical vertical shear-wave velocity profile at the basin center to that of the 1-D model. We model six 2-D trapezoidal basins that have a symmetric soil/bed rock interface with width/depth ratios of 3, 6, and 10, subjected to a suite of rock site records. For the first set of three basins, the soft soil layer is over the stiff soil, while the second set has a soft soil layer between the stiff layer and the bedrock. We find that the differences in response spectral amplification ratios between the two sets of basins are reduced from those of the two 1-D models, and show profound 2-D effects.
机译:对于大约0.5s周期的30m深的一维土壤位点,其表面上有一个软土层覆盖在基岩之上的一个刚性层上,其短周期放大特性与具有单个软土的一维模型的相似。层,因为对于峰值地面加速度(PGA),分隔放大和非放大范围的交叉点约为0.3-0.5g。但是,对于在坚硬表层和下伏基岩之间具有软层的土壤场地,短周期放大率要比具有均匀软土层的场地或具有软土层的场地的短期放大率大为降低。表面,PGA放大率的交点小至0.1-0.2g,具体取决于硬质土壤层的厚度。在高达1.0s的时间内观察到这两个1-D模型之间的显着差异。我们研究了在二维流域中心具有与1-D模型相同的垂直剪切波速度剖面的二维土壤流域的二维效应。我们对六个二维梯形盆地进行了建模,这些盆地具有对称的土壤/基岩界面,其宽深比分别为3、6和10,并受到了一系列岩石现场记录的影响。对于第一组的三个盆地,软土层位于硬土之上,而第二组在硬土层和基岩之间具有软土层。我们发现,与两个一维模型相比,两组盆地之间响应光谱放大率的差异有所减小,并显示出深刻的二维效果。

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