首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Linearized formulations and approximate solutions for the complex eikonal equation in orthorhombic media and applications of complex seismic traveltime
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Linearized formulations and approximate solutions for the complex eikonal equation in orthorhombic media and applications of complex seismic traveltime

机译:正交介质中复杂尖锐方程的线性化配方及近似解及复杂地震行程的应用

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摘要

We have developed linearized complex eikonal equations for orthorhombic media and the analytic solution for homogeneous acoustic media. The linearized formulations are developed from the highly nonlinear complex eikonal equation using a perturbation analysis. The analytic solution is obtained by expanding the complex traveltime in a Taylor series and constructing its coefficients. A critical factor for deriving this analytic expression is to apply the complex point-source method to the analytic expression for the background anisotropic medium. The analytic expressions show that the complex traveltime is a function of the anisotropic parameters, wave velocity, and spatial coordinates. We give the numerical results of the complex traveltime for different anisotropic parameters and initial beam widths. Furthermore, numerical examples are investigated for various coefficients as a function of the coordinates.
机译:我们已经开发了用于正交介质的线性化复杂的eikonal方程和均匀声学介质的分析解决方案。 使用扰动分析从高度非线性复合急性欧克隆方程式开发线性化制剂。 通过在泰勒序列中扩展复杂的行程并构建其系数来获得分析溶液。 导出该分析表达的关键因素是将复杂的点源法应用于背景各向异性介质的分析表达。 分析表达表明,复杂的旅行时间是各向异性参数,波速和空间坐标的函数。 我们给出了不同各向异性参数和初始光束宽度的复杂旅行时间的数值结果。 此外,作为坐标的函数,研究了各种系数的数值例子。

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