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Acoustic waveform inversion in frequency domain: Application to a tunnel environment

机译:频率域中的声波形式反转:应用于隧道环境

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Waveform inversion is an approach used to find an optimal model for the velocity field of a ground structure such that the dynamic response is close enough to the given seismic data. First, a suitable numerical approach is employed to establish a realistic forward computer model. The forward problem is solved in the frequency domain using higher-order finite elements. The velocity field is inverted over a specific number of discrete frequencies, thereby reducing the computational cost of the forward calculation and the nonlinearity of the inverse problem. The results are presented for different frequency sets and with different source and receiver locations for a two-dimensional model. The influence of attenuation effects is also investigated. The results of two blind tests are presented where only the seismic records of an unknown synthetic model with an inhomogeneous material parameter distribution are provided to mimic a more realistic case. Finally, the result of the inversion in a three-dimensional space is illustrated.
机译:波形反演是用于找到地面结构的速度场的最佳模型的方法,使得动态响应足够接近给定的地震数据。首先,采用合适的数值方法来建立一个现实的前进计算机模型。使用高阶有限元素在频域中解决了前向问题。速度场在特定数量的离散频率上反转,从而降低了前向计算的计算成本和逆问题的非线性。结果呈现出不同频率集和具有二维模型的不同源和接收器位置。还研究了衰减效应的影响。呈现了两个盲试验的结果,其中仅提供了具有不均匀材料参数分布的未知合成模型的地震记录来模仿更现实的情况。最后,示出了三维空间中的反转的结果。

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