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Suppression of near-surface scattered body-to-surface waves: a steerable and nonlinear filtering approach

机译:抑制近表面散射的体对面波:一种可操纵的非线性滤波方法

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We present an approach based on local-slope estimation for the separation of scattered surface waves from reflected body waves. The direct and scattered surface waves contain a significant amount of seismic energy. They present great challenges in land seismic data acquisition and processing, particularly in arid regions with complex near-surface heterogeneities (e.g., dry river beds, wadis/large escarpments, and karst features). The near-surface scattered body-to-surface waves, which have comparable amplitudes to reflections, can mask the seismic reflections. These difficulties, added to large amplitude direct and back-scattered surface (Rayleigh) waves, create a major reduction in signal-to-noise ratio and degrade the final sub-surface image quality. Removal of these waves can be difficult using conventional filtering methods, such as an f - k filter, without distorting the reflected signal. The filtering algorithm we present is based on predicting the spatially varying slope of the noise, using steerable filters, and separating the signal and noise components by applying a directional nonlinear filter oriented toward the noise direction to predict the noise and then subtract it from the data. The slope estimation step using steerable filters is very efficient. It requires only a linear combination of a set of basis filters at fixed orientation to synthesize an image filtered at an arbitrary orientation. We apply our filtering approach to simulated data as well as to seismic data recorded in the field to suppress the scattered surface waves from reflected body waves, and we demonstrate its superiority over conventional f - k techniques in signal preservation and noise suppression.
机译:我们提出了一种基于局部斜率估计的方法,用于将散射的表面波与反射的体波分离。直达和分散的表面波包含大量的地震能量。它们对陆地地震数据的采集和处理提出了巨大的挑战,特别是在具有复杂的近地表非均质性的干旱地区(例如干河床,河谷/大悬崖和岩溶地貌)。具有与反射相当的幅度的近地表散射体对地波可以掩盖地震反射。这些困难,加上大振幅的直接和反向散射表面(Rayleigh)波,大大降低了信噪比,并降低了最终的次表面图像质量。在不使反射信号失真的情况下,使用诸如f-k滤波器之类的常规滤波方法很难去除这些波。我们提出的滤波算法基于以下事实:使用可控滤波器预测噪声的空间变化斜率,并通过应用面向噪声方向的定向非线性滤波器来分离信号和噪声分量,以预测噪声,然后从数据中减去噪声。使用可控滤波器的斜率估计步骤非常有效。它仅需要一组固定方向的基本滤波器的线性组合即可合成以任意方向滤波的图像。我们将滤波方法应用于模拟数据以及现场记录的地震数据,以抑制反射的体波产生的散射表面波,并且我们展示了其在信号保存和噪声抑制方面优于传统f-k技术的优势。

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