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Scattered Ground-roll Attenuation for 2D Land Data Using Seismic Interferometry

机译:使用地震干涉测量法对2D土地数据分散的地面卷衰减

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We investigate the combination of a novel 2D point-receiver acquisition geometry and model-driven seismic interferometry to predict and subtract crossline scattered ground roll in land seismic data. Using synthetic data containing strong scattered ground roll, we show that two additional (sparse) source lines parallel to the 2D seismic line allow for the prediction and subtraction of the crossline scattering from common shot gathers. Using stacked sections, we show that the majority of the scattered ground-roll energy is removed, while preserving the underlying reflections. The method is applied after a conventional frequency-wavenumber filtering step that does not attenuate crossline scattered waves. Thus, the combined frequency-wavenumber and interferometric filtering approaches are an improvement over the use of only a frequency-wavenumber filter.
机译:我们研究了新颖的2D点接收器采集几何形状和模型驱动地震干涉法的组合,以预测和减去陆地地震数据中的十字线散射地辊。使用包含强散射地面辊的合成数据,我们表明与2D地震线平行的两个附加(稀疏)源极线允许从共同射击射击中预测和减法。使用堆叠部分,我们表明大部分散射的地辊能量被移除,同时保持潜在的反射。在不衰减十字线散射波的传统频率 - 波数滤波步骤之后应用该方法。因此,组合的频率 - 波数和干涉式滤波方法是对仅使用频率波数滤波器的改进。

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