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首页> 外文期刊>Bulletin of the Seismological Society of America >3D Nearly Analytic Central Difference Method for Computation of Sensitivity Kernels of Wave-Equation-Based Seismic Tomography
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3D Nearly Analytic Central Difference Method for Computation of Sensitivity Kernels of Wave-Equation-Based Seismic Tomography

机译:基于波动方程的地震层析成像灵敏度核的3D近似解析中心差分法

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摘要

We propose a numerical method to perform forward-modeling and sensitivity kernel computation in wave-equation-based seismic tomography. This method is an extension of the 2D nearly analytic central difference (NACD) method for solving the 3D acoustic wave equation. The 3D NACD method has fourth-order accuracies both in time and space with only a three-point stencil in each axis direction. Theoretical properties such as the stability criterion and the numerical dispersion relation were analyzed in detail. Relative to the fourth-order Lax-Wendroff correction method and the fourth-order staggered-grid finite-difference method, the 3D NACD method exhibits better performance in suppressing numerical dispersion. This was numerically confirmed by simulation of seismic-wave propagation in different models. Additionally, the 3D NACD method explicitly calculates the spatial gradients of the propagating wavefield, allowing a direct route to sensitivity kernel calculation. Using this method, waveform kernels and travel-time kernels for direct arrival, single reflected phase, multiple reflected phase, and headwave are computed in a crust-over-mantle model. Numerical examples reveal that sensitivity kernel computation based on solving the full-wave equation can accurately capture the interactions between wavefields and the Earth's interior heterogeneous structures, and hence generate high-accuracy sensitivity kernels for the subsequent tomographic inversion. Overall, the proposed method showed good performances for both forward-modeling and sensitivity kernel calculation. This suggests that the 3D NACD method could serve as an efficient and accurate forwarding-modeling tool for wave-equation-based seismic tomography.
机译:我们提出了一种在基于波方程的地震层析成像中进行正演建模和灵敏度核计算的数值方法。此方法是用于求解3D声波方程的2D近似分析中心差(NACD)方法的扩展。 3D NACD方法在时间和空间上都具有四阶精度,在每个轴方向上只有一个三点模板。详细分析了稳定性准则和数值色散关系等理论性质。相对于四阶Lax-Wendroff校正方法和四阶交错网格有限差分方法,3D NACD方法在抑制数值离散方面表现出更好的性能。通过在不同模型中模拟地震波传播在数值上证实了这一点。此外,3D NACD方法显式计算传播波场的空间梯度,从而可以直接进行灵敏度核计算。使用这种方法,可以在地幔覆盖模型中计算出直接到达,单反射相位,多反射相位和头波的波形核和传播时间核。数值算例表明,基于求解全波方程的灵敏度核计算可以准确地捕获波场与地球内部异质结构之间的相互作用,从而为随后的层析反演生成高精度的灵敏度核。总体而言,该方法在正向建模和灵敏度核计算方面均表现出良好的性能。这表明3D NACD方法可以用作基于波方程的地震层析成像的有效且准确的转发建模工具。

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