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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >An unsplit convolutional perfectly matched layer improved at grazing incidence for seismic wave propagation in poroelastic media
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An unsplit convolutional perfectly matched layer improved at grazing incidence for seismic wave propagation in poroelastic media

机译:未分裂的卷积完美匹配层在掠射入射时改善了地震波在多孔弹性介质中的传播

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摘要

The perfectly matched layer (PML) absorbing technique has become popular in numerical modeling in elastic or poroelastic media because of its efficiency in absorbing waves at nongrazing incidence. However, after numerical discretization, at grazing incidence, large spurious oscillations are sent back from the PML into the main domain. The PML then becomes less efficient when sources are located close to the edge of the truncated physical domain under study, for thin slices or for receivers located at a large offset. We develop a PML improved at grazing incidence for the poroelastic wave equation based on an unsplit convolutional formulation of the equation as a first-order system in velocity and stress. We show its efficiency for both nondissipative and dissipative Biot porous models based on a fourth-order staggered finite-difference method used in a thin mesh slice. The results obtained are improved significantly compared with those obtained with the classical PML.
机译:完全匹配层(PML)吸收技术已在弹性或多孔弹性介质的数值建模中流行,因为它在非掠入射时吸收波的效率很高。但是,在数值离散化之后,在掠射入射时,大的寄生振荡会从PML发送回主域。当源位于被研究的截断的物理域的边缘附近,对于薄片或位于较大偏移处的接收器时,PML的效率就会降低。我们基于方程的未分解卷积公式,将其作为速度和应力的一阶系统,开发了针对多孔弹性波方程的掠入射改进的PML。我们显示了基于薄网格切片中使用的四阶交错有限差分方法的非耗散性和耗散性Biot多孔模型的效率。与使用传统PML获得的结果相比,获得的结果有了显着改善。

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