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Vectorial seismic modeling for 3D objects by the classical solution

机译:用经典解法对3D对象进行矢量地震建模

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摘要

The analytic benchmark solution for the scattering and diffraction of elastic P- and S-waves by a single spherical obstacle is presented in a condensed format. Our aim is divulge to the scientific community this not widely known classical solution to construct a direct seismic model for 3D objects. Some of the benchmark papers are frequently plagued by misprints and none offers results on the transient response. The treatment of the vectorial case appears to be insipient in the literature. The classical solution is a superposition of incident and diffracted fields. Plane P- or S-waves are assumed. They are expressed as expansions of spherical wave functions which are tested against exact results. The diffracted field by the obstacle is calculated from the analytical enforcing of boundary conditions at the scatterer-matrix interface. The spherical obstacle is a cavity, an elastic inclusion or a fluid-filled body. A complete set of wave functions is used in terms of Bessel and Hankel radial functions. Legendre and trigonometric functions are used for the angular coordinates. In order to provide information to calibrate and approximate the seismic modeling for real objects, results are shown in time and frequency domains. Diffracted displacements amplitudes versus normalized frequency and radiation patterns for various scatterer-matrix properties are reported. To study propagation features that may be useful to geophysicists and engineers, synthetic seismograms for some relevant cases are computed.
机译:以简明格式给出了单个球形障碍物对弹性P波和S波的散射和衍射的解析基准解决方案。我们的目标是向科学界透露这个尚未广为人知的经典解决方案,以构建3D对象的直接地震模型。一些基准纸经常被印刷错误困扰,没有一个提供瞬态响应结果。在文献中,对矢量病的治疗似乎还不够。经典的解决方案是入射场和衍射场的叠加。假定平面P波或S波。它们表示为球面波函数的展开,并针对精确结果进行了测试。障碍物的衍射场是根据散射体-矩阵界面处边界条件的解析强制计算得出的。球形障碍物是空腔,弹性夹杂物或充满流体的物体。根据Bessel和Hankel径向函数,使用了完整的波动函数集。勒让德和三角函数用于角坐标。为了提供用于校准和逼近真实对象的地震模型的信息,在时域和频域中显示结果。报告了各种散射矩阵特性的位移位移幅度与归一化频率和辐射方向图的关系。为了研究可能对地球物理学家和工程师有用的传播特征,计算了一些相关情况的合成地震图。

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