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    基于优化光学流的全方位角度道集提取

    Extraction of full-azimuth angle gathers based on optimized optical flow

    • 摘要: 在地震成像与油气勘探领域,全方位角度域共成像点道集至关重要,它能够对地震波在地下介质中的传播规律及反射特征进行有效刻画与呈现。利用角道集剩余曲率分析,能够进行高精度层析反演,进一步提高成像精度。传统Horn-Schunck(HS)光学流法计算波场方向时容易受到各方向的噪声影响,计算精度和抗噪性有待提高,为此,研究了提取全方位角道集的优化方法,该优化方法在HS光学流方法上加以改进,发展出一种基于分数阶目标函数的改进光学流方法,将数据项与正则化项按不同方向分别赋予权重,进一步约束波场方向,从而提升计算精度与抗噪性。对复杂模型和实际资料进行测试,验证了该方法在面对复杂构造和低信噪比实际数据时,能够提取更高质量的全方位角道集,明显提升波场方向的计算精度和抗噪性,验证了该方法的有效性。

       

      Abstract: In the field of seismic imaging and hydrocarbon exploration, full-azimuth angle-domain common image gathers are of great importance, as they can effectively characterize and represent the propagation behavior of seismic waves in subsurface media and their reflection features. Through the analysis of residual curvature in angle-domain common image gathers, high-precision tomographic inversion can be performed to further improve imaging accuracy. Optimized methods for extracting full-azimuth angle-domain common image gathers were studied. The traditional Horn–Schunck (HS) optical flow method is prone to noise interference from various directions when calculating wavefield directions, and its computational accuracy and noise resistance still need improvement. In this study, the HS optical flow method was improved by developing a modified optical flow approach based on a fractional-order objective function. This method assigned direction-specific weights to both the data term and the regularization term, thereby further constraining the wavefield direction and enhancing computational accuracy and noise resistance. Finally, tests on complex models and real datasets demonstrate that the proposed method can extract higher-quality full-azimuth angle-domain common image gathers in the presence of complex structures and low signal-to-noise ratio field data, with significantly improved wavefield direction estimation and noise resistance, validating the effectiveness of the proposed approach.

       

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