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首页> 外文期刊>Marine Geophysical Researches >Signal enhancement and multiple suppression using Radon transform: an application to marine multichannel seismic data
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Signal enhancement and multiple suppression using Radon transform: an application to marine multichannel seismic data

机译:使用Radon变换的信号增强和多重抑制:在海洋多通道地震数据中的应用

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摘要

Radon filters are often used for removal of multiple reflections from normal move-out-corrected seismic reflection data. In the conventional Radon transform, integration surfaces are hyperbolic rather than linear. This specific hyperbolic surface is equivalent to a parabola in terms of computational expense, but more accurately distinguishes multiples from primary reflections. The forward transform separates seismic arrivals by their differences in travel time move-out. Multiples can be suppressed by an inverse transform of the seismic data. Examples show that multiples are effectively attenuated in pre-stack and stacked seismograms. Based on the parabolic Radon transform, a new method is utilized for missing offset restoration, resampling and regularization of pre-stack individual common depth point (CDP) gathers. The method is also valid for resampling spatially aliased seismic data. Restoration of missing offsets and trace interpolation is an interesting and important problem in seismic data processing. Here we present an application of Radon transform on a multichannel seismic data set from the western continental margin of India (WCMI), which shows remarkable signal enhancement. Keywords WCMI - Multichannel seismic data - Radon transform - Multiple suppression - Restoration
机译:filters滤镜通常用于从法向偏移校正后的地震反射数据中去除多次反射。在常规的Radon变换中,积分曲面是双曲线的,而不是线性的。就计算费用而言,该特定的双曲表面等效于抛物线,但更准确地将倍数与主反射区分开。正向变换通过地震到达时间移动的差异来区分地震到达。可以通过地震数据的逆变换来抑制倍数。实例表明,在叠前和叠前地震图中,倍数被有效衰减了。基于抛物线Radon变换,采用了一种新的方法来进行失叠补偿,重采样以及对叠前个体公共深度点(CDP)集合进行正则化。该方法对于重新采样空间混叠地震数据也是有效的。缺失偏移的恢复和轨迹插值是地震数据处理中一个有趣且重要的问题。在这里,我们介绍了Radon变换在来自印度西部大陆边缘(WCMI)的多通道地震数据集上的应用,它显示了显着的信号增强。 WCMI-多通道地震数据-Radon变换-多重抑制-恢复

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