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Transient wave motion in a cracked, multi-layered geological region by the BEM

机译:BEM的瞬态波动在破裂的多层地质区域中的瞬态波动

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A hybrid BEM is developed for investigating ground motion in geological regions with complex geometry, variable material properties, interface cracks, internal cracks, and under plain-strain conditions. Two different aspects of the problem are considered, namely (a) computation of ground motion in the form of synthetic seismograms at the free surface of the region swept by a seismically-induced pressure (P) wave and (b) evaluation of the crack-tip stress concentration field (SCF) that develops around cracks buried in the deposit for the same loading. The present method combines both displacement and regularized traction BEM in the Laplace transformed domain for the crack-free and cracked states, respectively, while the transient nature of the wave scattering phenomenon is reconstructed through use of the inverse Laplace transformation.
机译:开发了一种混合BEM,用于研究具有复杂几何形状,可变材料特性,界面裂缝,内部裂缝以及在普通菌株条件下的地质区域中的地基运动。考虑了该问题的两个不同方面,即(a)在地震诱导的压力(p)波和(b)裂缝的评估中扫过的区域的自由表面的合成地震图的形式的地面运动的计算。尖端应力集中场(SCF)在沉积物中埋入的沉积物以进行相同的装载。本方法分别将位移和正则化牵引BEM相结合,分别为无裂纹和破裂状态,而通过使用逆拉普拉斯变换来重建波散射现象的瞬态性质。

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