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首页> 外文期刊>Studia Geophysica et Geodaetica >Reformulated Kinematic and Dynamic Ray Tracing Systems for Arbitrarily Anisotropic Media
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Reformulated Kinematic and Dynamic Ray Tracing Systems for Arbitrarily Anisotropic Media

机译:各向异性介质的运动学和动态射线追踪系统的重新设计

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I reformulate well-established systems for kinematic and dynamic ray tracing in 3D heterogeneous media with arbitrary anisotropy. Matrices of size 3 × 3, e.g. the Christoffel matrix, are substituted by six-component vectors, and the Christoffel matrix elements are expressed explicitly in terms of the elements of the 6 × 6 matrix of elastic coefficients, written in Voigt notation. Thereby, I find it easier to see the effects on the ray tracing systems of vanishing elastic coefficients and Christoffel matrix elements and of vanishing derivatives with respect to spatial coordinates and slowness vector components. The eigenvalue of the current wave and its derivatives with respect to the ray parameters are included explicitly, which may be favorable for ray tracing processes optimized with respect to speed. With the ANRAY program as a reference, I show that the new formulation requires less optimization than the conventional one.
机译:我对具有任意各向异性的3D异构介质中的运动学和动态射线追踪重新建立了完善的系统。尺寸为3×3的矩阵将Christoffel矩阵替换为六分量向量,并以Voigt表示法将6×6弹性系数矩阵的元素明确表示为Christoffel矩阵元素。因此,我发现更容易看到消失的弹性系数和Christoffel矩阵元素以及消失的空间坐标和慢度矢量分量对光线跟踪系统的影响。明确包含了电流波的特征值及其相对于射线参数的导数,这可能有利于针对速度进行优化的射线跟踪过程。以ANRAY程序为参考,我证明了新配方比传统配方所需的优化更少。

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