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Numerical study on screening of surface waves using a pair of softer backfilled trenches

机译:使用一对较软的回填沟槽筛选表面波的数值研究

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Vibration screening effectiveness of a pair of in-filled trenches is numerically studied under conditions of plane strain using PLAXIS 2D in a linear elastic, isotropic, and homogeneous half-space acted upon by a steady-state vertical excitation. Barrier efficiency is analyzed in terms of reduction of vertical and horizontal vibration components with respect to the variations in barrier geometry and in-fill material parameters. The geometric features are normalized with respect to Rayleigh wavelength of vibration in soil. The in-fill trench material is considered to be softer and accordingly assigned lower shear wave velocities than the half-space. Non-dimensional design charts are developed and the key parameters participating in wave screening process are identified. Some recommendations are made regarding the optimal selection of these parameters. Comparison with a few published results shows close agreement. Such an isolation scheme may be advantageous in circumstances where a single trench requires unrealistic depth. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在平面应变的条件下,使用PLAXIS 2D在稳态垂直激励作用下的线性弹性,各向同性和均质的半空间中,对一对填充沟槽的振动屏蔽效果进行了数值研究。相对于屏障几何形状和填充材料参数的变化,通过减少垂直和水平振动分量来分析屏障效率。关于土壤中振动的瑞利波长对几何特征进行归一化。填充的沟槽材料被认为比半空间软并且因此被赋予比半空间更低的剪切波速度。制定了无量纲设计图,并确定了参与波浪筛选过程的关键参数。针对这些参数的最佳选择提出了一些建议。与一些已发表的结果进行比较显示出非常一致。在单个沟槽需要不切实际的深度的情况下,这种隔离方案可能是有利的。 (C)2014 Elsevier Ltd.保留所有权利。

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