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A new 3-D ray tracing method based on LTI using successive partitioning of cell interfaces and traveltime gradients

机译:一种新的基于LTI的3-D射线跟踪方法,该方法使用了单元接口和行进时间梯度的连续分区

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We present a new method of three-dimensional (3-D) seismic ray tracing, based on an improvement to the linear traveltime interpolation (LTI) ray tracing algorithm. This new technique involves two separate steps. The first involves a forward calculation based on the LTI method and the dynamic successive partitioning scheme, which is applied to calculate traveltimes on cell boundaries and assumes a wavefront that expands from the source to all grid nodes in the computational domain. We locate several dynamic successive partition points on a cell's surface, the traveltimes of which can be calculated by linear interpolation between the vertices of the cell's boundary. The second is a backward step that uses Fermat's principle and the fact that the ray path is always perpendicular to the wavefront and follows the negative traveltime gradient. In this process, the first-arriving ray path can be traced from the receiver to the source along the negative traveltime gradient, which can be calculated by reconstructing the continuous traveltime field with cubic B-spline interpolation. This new 3-D ray tracing method is compared with the LTI method and the shortest path method (SPM) through a number of numerical experiments. These comparisons show obvious improvements to computed traveltimes and ray paths, both in precision and computational efficiency.
机译:基于线性旅行时间插值(LTI)射线跟踪算法的改进,我们提出了一种三维(3-D)地震射线跟踪的新方法。这项新技术涉及两个单独的步骤。第一个涉及基于LTI方法和动态连续分区方案的前向计算,该计算用于计算单元边界上的旅行时间,并假定波前从源扩展到计算域中的所有网格节点。我们在单元表面上定位几个动态连续分区点,可以通过单元边界的顶点之间的线性插值来计算其移动时间。第二个步骤是后向步骤,它使用了费马原理,并且射线路径始终垂直于波前并遵循负的传播时间梯度。在此过程中,可以沿负传播时间梯度从接收器到源追踪到第一个到达的射线路径,这可以通过使用三次B样条插值重建连续传播时间字段来计算。通过大量数值实验,将这种新的3-D射线跟踪方法与LTI方法和最短路径方法(SPM)进行了比较。这些比较表明,计算出的行进时间和射线路径在精度和计算效率上都有明显的改善。

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