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Ray tracing of multiple transmitted/reflected/converted waves in 2-D/3-D layered anisotropic TTI media and application to crosswell traveltime tomography

机译:2-D / 3-D层状各向异性TTI介质中多个透射/反射/转换波的射线追踪及其在井间移动时间层析成像中的应用

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摘要

To overcome the deficiency of some current grid-/cell-based ray tracing algorithms, which are only able to handle first arrivals or primary reflections (or conversions) in anisotropic media, we have extended the functionality of the multistage irregular shortest-path method to 2-D/3-D tilted transversely isotropic (TTI) media. The new approach is able to track multiple transmitted/reflected/converted arrivals composed of any kind of combinations of transmissions, reflections and mode conversions. The basic principle is that the seven parameters (five elastic parameters plus two polar angles defining the tilt of the symmetry axis) of the TTI media are sampled at primary nodes, and the group velocity values at secondary nodes are obtained by tri-linear interpolation of the primary nodes across each cell, from which the group velocities of the three wave modes (qP, qSV and qSH) are calculated. Finally, we conduct grid-/cell-based wave front expansion to trace multiple transmitted/reflected/converted arrivals from one region to the next. The results of calculations in uniform anisotropic media indicate that the numerical results agree with the analytical solutions except in directions of SV-wave triplications, at which only the lowest velocity value is selected at the singularity points by the multistage irregular shortest-path anisotropic ray tracing method. This verifies the accuracy of the methodology. Several simulation results show that the new method is able to efficiently and accurately approximate situations involving continuous velocity variations and undulating discontinuities, and that it is suitable for any combination of multiple transmitted/reflected/converted arrival tracking in TTI media of arbitrary strength and tilt. Crosshole synthetic traveltime tomographic tests have been performed, which highlight the importance of using such code when the medium is distinctly anisotropic
机译:为了克服某些当前基于网格/单元的光线跟踪算法的缺陷,该算法仅能够处理各向异性介质中的首次到达或主反射(或转换),我们将多级不规则最短路径方法的功能扩展到2-D / 3-D倾斜横向各向同性(TTI)介质。新方法能够跟踪由传输,反射和模式转换的任何组合组成的多个传输/反射/转换的到达。基本原理是,在主要节点上采样TTI介质的七个参数(五个弹性参数加两个极角定义对称轴的倾斜度),并通过三线性插值获得次要节点处的群速度值。通过每个单元的主要节点,可以计算出三个波模(qP,qSV和qSH)的群速度。最后,我们进行基于网格/小区的波前扩展,以追踪从一个区域到另一个区域的多个透射/反射/转换的到达。在均匀各向异性介质中的计算结果表明,数值结果与解析解相符,除了在SV波重复的方向上,在该方向上,多级不规则最短路径各向异性射线追踪仅在奇异点选择了最低速度值方法。这验证了方法的准确性。若干仿真结果表明,该新方法能够高效,准确地估计涉及连续速度变化和起伏不连续的情况,并且适用于任意强度和倾斜度的TTI介质中多次透射/反射/转换到达跟踪的任意组合。进行了跨孔合成行进时间层析成像测试,突出了当介质明显各向异性时使用此类代码的重要性

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