An Effective True-Amplitude Gaussian Beam Migration via Illumination Compensation

S. Liu, X. Xie, R. Wu, Z. Yan, H. Gu
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引用次数: 1

Abstract

Summary Conventional migrations are apt to structure imaging, but often incapable of generating true-amplitude subsurface image. We propose a true-amplitude Gaussian beam migration (GBM) method under the framework of seismic illumination compensation. A novel scheme based on the GBM is developed to estimate the point spread functions, with which the illumination compensation can be efficiently implemented in the local wave-number domain. The total computational cost of the proposed true-amplitude imaging includes one Born modelling process and two conventional GBM processes, which is more efficient than the true-amplitude imaging using least squares migration which requires multiple iterations. Numerical examples using synthetic data demonstrated the effectiveness and efficiency of the proposed method.
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基于光照补偿的真幅高斯光束偏移
传统偏移方法易于构造成像,但往往不能产生真振幅的地下成像。提出了一种地震光照补偿框架下的真振幅高斯光束偏移方法。提出了一种基于GBM的点扩展函数估计方法,该方法可以有效地在局部波数域实现光照补偿。本文提出的真幅成像的总计算成本包括一个Born建模过程和两个传统的GBM过程,比需要多次迭代的最小二乘迁移的真幅成像效率更高。综合数据的数值算例验证了该方法的有效性和有效性。
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