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3D elastic waveform modeling with an optimized equivalent staggered-grid finite-difference method

机译:3D采用优化的等效交错栅格有限差分法建模的弹性波形建模

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Equivalent staggered-grid (ESG) as a new family of schemes has been utilized in seismic modeling, imaging, and inversion. Traditionally, the Taylor series expansion is often applied to calculate finite-difference (FD) coefficients on spatial derivatives, but the simulation results suffer serious numerical dispersion on a large frequency zone. We develop an optimized equivalent staggered-grid (OESG) FD method that can simultaneously suppress temporal and spatial dispersion for solving the second-order system of the 3D elastic wave equation. On the one hand, we consider the coupling relations between wave speeds and spatial derivatives in the elastic wave equation and give three sets of FD coefficients with respect to the P-wave, S-wave, and converted-wave (C-wave) terms. On the other hand, a novel plane wave solution for the 3D elastic wave equation is derived from the matrix decomposition method to construct the time–space dispersion relations. FD coefficients of the OESG method can be acquired by solving the new dispersion equations based on the Newton iteration method. Finally, we construct a new objective function to analyze P-wave, S-wave, and C-wave dispersion concerning frequencies. The dispersion analyses show that the presented method produces less modeling errors than the traditional ESG method. The synthetic examples demonstrate the effectiveness and superiority of the presented method.
机译:相当于交错网格(ESG)作为新的计划系列已经用于地震建模,成像和反转。传统上,泰勒序列膨胀通常应用于在空间衍生物上计算有限差异(FD)系数,但模拟结果在大频率区上遭受严重的数值分散。我们开发了优化的等效交错网格(OESG)FD方法,可以同时抑制用于求解3D弹性波方程的二阶系统的时间和空间色散。一方面,我们考虑波速和弹性波动方程中的空间衍生物之间的耦合关系,并对P波,S波和转换波(C波)术语提供三组FD系数。另一方面,从矩阵分解方法导出用于3D弹性波方程的新颖平面波解,以构建时间空间色散关系。通过基于牛顿迭代方法求解新的色散方程,可以获得OESG方法的FD系数。最后,我们构建了一个新的目标函数来分析频率的P波,S波和C波分散。分散分析表明,所提出的方法产生的误差较少,而不是传统的ESG方法。合成实例证明了所提出的方法的有效性和优越性。

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