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Element-by-element parallel spectral-element methods for 3-D teleseismic wave modeling

机译:3-D远震波建模的逐元素并行频谱元素方法

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摘要

The development of an efficient algorithm for teleseismic wave field modeling is valuable for calculating the gradients of the misfit function (termed misfit gradients) or Fréchet derivatives when the teleseismic waveform is used for adjoint tomography. Here, we introduce an element-by-element parallel spectral-element method (EBE-SEM) for the efficient modeling of teleseismic wave field propagation in a reduced geology model. Under the plane-wave assumption, the frequency-wavenumber (FK) technique is implemented to compute the boundary wave field used to construct the boundary condition of the teleseismic wave incidence. To reduce the memory required for the storage of the boundary wave field for the incidence boundary condition, a strategy is introduced to efficiently store the boundary wave field on the model boundary. The perfectly matched layers absorbing boundary condition (PML ABC) is formulated using the EBE-SEM to absorb the scattered wave field from the model interior. The misfit gradient can easily be constructed in each time step during the calculation of the adjoint wave field. Three synthetic examples demonstrate the validity of the EBE-SEM for use in teleseismic wave field modeling and the misfit gradient calculation.
机译:用于远震波场建模的有效算法的开发对于将远震波形用于伴随层析成像时计算失配函数的梯度(称为失配梯度)或Fréchet导数非常有价值。在这里,我们介绍了一种在简化地质模型中对电波波场传播进行有效建模的逐元素并行频谱元素方法(EBE-SEM)。在平面波假设下,采用频率波数(FK)技术来计算用于构造远震波入射边界条件的边界波场。为了减少存储入射波边界条件下的边界波场所需的存储空间,引入了一种将边界波场有效地存储在模型边界上的策略。使用EBE-SEM制定了完美匹配的吸收边界条件的层(PML ABC),以吸收模型内部的散射波场。在计算伴随波场时,可以在每个时间步中轻松构建失配梯度。三个综合实例证明了EBE-SEM在远震波场建模和失配梯度计算中的有效性。

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