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Multiwave Gaussian beam prestack depth migration of exploration-scale seismic data with complex near-surface effects

机译:具有复杂近地表效应的勘探规模地震数据的多波高斯光束叠前深度偏移

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摘要

The direct prestack depth migration methods of nonplanar data provide effective ways to address the complex near-surface problem. Based on the study of local slant stacks considering the elevation and dip angle information of an irregular surface, an alternative method for multiwave Gaussian beam prestack depth migration of exploration-scale seismic data with complex near surface effects is presented here. We first derive the downward-continued wavefield for an irregular surface in terms of Gaussian beams, where we directly decompose the seismic records within a Gaussian window into a local plane-wave component. The PP- and PS-wave Gaussian beam prestack depth migration methods under complex near-surface conditions are then presented, after the wavefield separation is performed with an affine coordinate-system transform. Tests with numerical examples demonstrate the accuracy and effectiveness of the method.
机译:非平面数据的直接叠前深度偏移方法提供了解决复杂的近地表问题的有效方法。基于对不规则地面的仰角和倾角信息的局部倾斜叠加研究,提出了一种具有复杂近地表效应的勘探规模地震数据多波高斯光束叠前深度偏移的替代方法。我们首先根据高斯束推导不规则表面的向下连续波场,然后将高斯窗口内的地震记录直接分解为局部平面波分量。在利用仿射坐标系变换进行波场分离之后,提出了在复杂近地表条件下的PP波和PS波高斯光束叠前深度偏移方法。数值实例测试证明了该方法的准确性和有效性。

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