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Wide-Angle Shift-Map PE for a Piecewise Linear Terrain

机译:用于分段线性地形的广角移位地图PE

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A wide-angle parabolic wave equation solution, using shift-map and finite-difference techniques, is presented. The corresponding split-step Fourier solution is well known. The solution using finite-difference technique, where the standard parabolic wave equation is modified into the so-called Claerbout equation allowing propagation angles up to 45 ° from the paraxial direction, is also well known. Here, we present an extension to that solution in which the shift-map technique is incorporated into the finite-difference scheme allowing a varying terrain to be considered. The result is a solution that corresponds to the well known split-step solution, which is believed to perform well for terrain slopes up to 10 - 15, and discontinuous slope changes on the order of 15- 20. This solution is of first order with respect to the terrain slope. The resulting difference scheme is for solving a tridiagonal system. When using the finite-difference technique, it is also possible to find a second order solution with respect to the terrain slope. The resulting difference scheme in this case is for solving a pentadiagonal system. This new solution performs well for slopes up to about 15° — 20' and discontinuous slope changes up to about 30 0 — 40°, which is an improvement.
机译:呈现了一种广角抛物面波动方程解决方案,使用换档图和有限差分技术。相应的分流步骤傅立叶解决方案是众所周知的。使用有限差异技术的解决方案,其中标准抛物面波动方程被修改为允许传播角度距离横向方向高达45°的所谓的克劳宾方程,也是众所周知的。这里,我们向该解决方案呈现了将换档地图技术结合到有限差分方案中的扩展,允许考虑变化的地形。结果是对应于众所周知的分裂步骤解决方案的解决方案,该解决方案被认为对地形倾斜度的表现良好,最高可达10-15,并且不连续的斜坡对15-20的顺序变化。该解决方案是第一顺序尊重地形斜坡。所得到的差异方案用于求解三角形系统。当使用有限差分技术时,还可以找到关于地形斜率的二阶解决方案。在这种情况下,所得到的差分方案用于求解偏见系统。这种新解决方案对于高达约15° - 20'的斜率和不连续的斜率变化的斜率高达约30 - 40°,这是一种改进。

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