连续小波变换在RTM成像条件波场方向数据提取中的应用

Juan Guillermo Paniagua Castrillón, O. Montoya
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引用次数: 0

摘要

反向时移中的低频伪影是由于在射线路径上的非反射点处的源波场和接收波场的不必要的相互关联造成的。这些工件可能隐藏迁移模型中的重要细节,并增加不良解释风险。已经提出了一些方法来避免或减少这些伪影的数量,保留反射,提高模型质量,实施其他策略,如修改波动方程,提出其他成像条件,以及使用图像滤波技术。其中一种方法使用波场分解,将沿相反方向传播的波场分量关联起来。我们提出了一种从RTM成像条件波场中提取方向信息的方法,以获得更好,更精细的成像特征。该方法是基于连续小波变换(CWT)分离波场的方向信息,并分析高斯小波族得到的尺度图中频率含量的主要变化。通过数值应用,我们证明了该方法可以有效地去除迁移图像中不需要的伪影。此外,我们还使用了拉盖尔-高斯滤波来改进所提出方法的结果。
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Application of the continuous wavelet transform in the extraction of directional data on RTM imaging condition wavefields
Low-frequency artifacts in reverse time migration result from unwanted cross-correlation of the source and receiver wavefields at non-reflecting points along ray-paths. These artifacts can hide important details in migrated models and increase poor interpretation risk. Some methods have been proposed to avoid or reduce the number of these artifacts, preserving reflections, and improving model quality, implementing other strategies such as modification of the wave equation, proposing other imaging conditions, and using image filtering techniques. One of these methods uses wavefield decomposition, correlating components of the wavefields that propagate in opposite directions. We propose a method for extracting directional information from the RTM imaging condition wavefields to obtain characteristics allowing for better, more refined imaging. The method works by separating directional information about the wavefields based on the continuous wavelet transform (CWT), and the analysis of the main changes on the frequency content revealed within the scalogram obtained by a Gaussian wavelet family. Through numerical applications, we demonstrate that this method can effectively remove undesired artifacts in migrated images. In addition, we use the Laguerre-Gauss filtering to improve the results obtained with the proposed method.
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