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Anisotropic wave propagation through finite-difference grids

机译:各向异性波通过有限差分网格的传播

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摘要

An algorithm is presented to solve the elastic-wave equation by replacing the partial differentials with finite differences. It enables wave propagation to be simulated in three dimensions through generally anisotropic and heterogeneous models. The space derivatives are calculated using discrete convolution sums, while the time derivatives are replaced by a truncated Taylor expansion. A centered finite difference scheme in cartesian coordinates is used for the space derivatives leading to staggered grids. The use of finite difference approximations to the partial derivatives results in a frequency-dependent error in the group and phase velocities of waves. For anisotropic media, the use of staggered grids implies that some of the elements of the stress and strain tensors must be interpolated to calculate the Hook sum. This interpolation induces an additional error in the wave properties. The overall error depends on the precision of the derivative and interpolation operators, the anisotropic symmetry system, its orientation and the degree of anisotropy. The dispersion relation for the homogeneous case was derived for the proposed scheme. Since we use a general description of convolution sums to describe the finite difference operators, the numerical wave properties can be calculated for any space operator and an arbitrary homogeneous elastic model. In particular, phase and group velocities of the three wave types can be determined in any direction. We demonstrate that waves can be modeled accurately even through models with strong anisotropy when the operators are properly designed.
机译:提出了一种用有限差分代替偏微分方程来求解弹性波方程的算法。通过一般的各向异性和非均质模型,它可以在三个维度上模拟波传播。使用离散卷积和计算空间导数,而将时间导数替换为截断的泰勒展开式。笛卡尔坐标中的中心有限差分方案用于导致交错网格的空间导数。对偏导数使用有限差分近似会导致波的群速度和相速度出现频率相关的误差。对于各向异性介质,交错网格的使用意味着必须对应力张量和应变张量的某些元素进行插值以计算Hook和。这种插值会在波浪属性中引起额外的误差。总误差取决于导数和插值算子的精度,各向异性对称系统,其方向和各向异性程度。针对该方案推导了均质情况下的色散关系。由于我们使用卷积和的一般描述来描述有限差分算子,因此可以为任何空间算子和任意齐次弹性模型计算数值波属性。特别地,可以在任何方向上确定三种波类型的相速度和群速度。我们证明,即使在正确设计了算子的情况下,即使通过具有强各向异性的模型也可以准确地对波进行建模。

著录项

  • 来源
    《Geophysics》 |1995年第4期|p.1203-1216|共14页
  • 作者单位

    Institute of Theoretical Geophysics, Dept. of Earth Sciences, University of Cambridge, Downing Street, Cambridge CB2 3EQ, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-18 00:20:14

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