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Three-dimensional Travel-time Calculation Based on Fermat's Principle

机译:基于费马原理的三维行程时间计算

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We present a new travel-time calculation method based on Fermat's principle. In the method, travel times are recursively calculated on horizontal planes of increasing depth. For typical configurations of exploration geophysics, the distance between the planes is on the order of 100 m. The travel times on the first plane are calculated by connecting straight ray segments from the source point to the grid points on the plane and integrating the slowness along each segment. The times on the other planes are calculated by finding the minimum of the combination of the times on the plane above plus the additional time along segments connecting grid points on the two planes. The travel-time calculation method is designed for calculating either the first arrival times, or the time of the shortest travel path arrival. The method is extended to handle vertically transverse isotropic (VTI) media by an approach which increases the computing time only slightly. The algorithm is tested against synthetic examples for isotropic and VTI wave propagation.
机译:我们提出了一种基于费马原理的新的旅行时间计算方法。在该方法中,在增加深度的水平面上递归计算行进时间。对于勘探地球物理学的典型配置,平面之间的距离约为100 m。通过将从源点到平面上的网格点的直射线段连接起来,并沿每个段积分慢度,可以计算出第一平面上的传播时间。通过找到上方平面上的时间加上沿着连接两个平面上的网格点的线段的额外时间的组合中的最小值,可以计算出其他平面上的时间。行驶时间计算方法设计用于计算第一到达时间或最短行驶路径到达的时间。该方法通过仅增加一点计算时间的方法扩展为处理垂直横观各向同性(VTI)介质。针对各向同性和VTI波传播的综合示例对算法进行了测试。

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