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A 27-point scheme for a 3D frequency-domain scalar wave equation based on an average-derivative method

机译:基于平均导数法的3D频域标量波动方程的27点方案

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摘要

Based on an average-derivative method and optimization techniques, a 27-point scheme for a 3D frequency-domain scalar wave equation is developed. Compared to the rotated-coordinate approach, the average-derivative optimal method is not only concise but also applies to equal and unequal directional sampling intervals. The resulting 27-point scheme uses a 27-point operator to approximate spatial derivatives and the mass acceleration term. The coefficients are determined by minimizing phase velocity dispersion errors and the resultant optimal coefficients depend on ratios of directional sampling intervals. Compared to the classical 7-point scheme, the number of grid points per shortest wavelength is reduced from approximately 13 to approximately 4 by this 27-point optimal scheme for equal directional sampling intervals and unequal directional sampling intervals as well. Two numerical examples are presented to demonstrate the theoretical analysis. The average-derivative algorithm is also extended to a 3D frequency-domain viscous scalar wave equation.
机译:基于平均导数方法和优化技术,开发了一种3D频域标量波动方程的27点格式。与旋转坐标法相比,平均导数最优方法不仅简洁明了,而且适用于相等和不相等的方向采样间隔。所得的27点方案使用27点算子来近似空间导数和质量加速度项。通过最小化相速度色散误差来确定系数,并且所得到的最佳系数取决于方向采样间隔的比率。与经典的7点方案相比,对于相等方向的采样间隔和不相等的方向采样间隔,通过这种27点的最佳方案,每最短波长的网格点数从大约13个减少到大约4个。给出了两个数值例子来说明理论分析。平均导数算法也扩展到3D频域粘性标量波方程。

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