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Window-controlled CMP crosscorrelation analysis for surface waves in laterally heterogeneous media

机译:横向非均匀介质中表面波的窗口控制CMP互相关分析

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摘要

CMP crosscorrelation (CMPCC) analysis of surface waves enhances lateral resolution of surface wave analyses. We found the technique of window-controlled CMPCC analysis, which applies two kinds of spatial windows to further improve the lateral resolution of CMPCC analysis. First, a spatial weighting function given by the number of crosscorrelation pairs is applied to CMPCC gathers. Because the number of crosscorrelation pairs is concentrated near the CMP, the lateral resolution in extracting dispersion curves on CMPs can be improved. Second, crosscorrelation pairs with longer receiver spacing are excluded to further improve lateral resolution. Although removing crosscorrelation pairs generally decreases the accuracy of phase velocity estimations, the required accuracy to estimate phase velocities is maintained by considering the wavenumber resolution defined for given receiver configurations. When applied to a synthetic data set simulating a laterally heterogeneous structure, window-controlled CMPCC analysis improved the retrieval of the lateral variation in local dispersion curves beneath each CMP. We also applied the method to field seismic data across a major fault. The window-controlled CMPCC analysis improved lateral variations of the inverted S-wave velocity structure without degrading the accuracy of S-wave velocity estimations. We discovered that window-controlled CMPCC analysis is effective in improving lateral resolution of dispersion curve estimations with respect to the original CMPCC analysis.
机译:表面波的CMP互相关(CMPCC)分析提高了表面波分析的横向分辨率。我们发现了窗口控制的CMPCC分析技术,该技术应用了两种空间窗口来进一步提高CMPCC分析的横向分辨率。首先,将由互相关对的数量给定的空间加权函数应用于CMPCC集合。由于互相关对的数量集中在CMP附近,因此可以提高在CMP上提取色散曲线时的横向分辨率。其次,排除了具有较长接收器间隔的互相关对,以进一步提高横向分辨率。尽管删除互相关对通常会降低相速度估计的准确性,但是通过考虑为给定接收器配置定义的波数分辨率,可以维持估计相速度所需的准确性。当应用于模拟横向异质结构的合成数据集时,窗口控制的CMPCC分析改善了对每个CMP下局部色散曲线的横向变化的检索。我们还将该方法应用于横跨重大断层的地震数据。窗口控制的CMPCC分析改善了倒S波速度结构的横向变化,而不会降低S波速度估计的准确性。我们发现,相对于原始CMPCC分析,窗口控制的CMPCC分析可有效提高色散曲线估计的横向分辨率。

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