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Efficient and stable extrapolation of prestack wavefields

机译:Prestack Wavefields的高效和稳定外推

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The double-square-root (DSR) relation offers a platform to perform prestack imaging using an extended single wavefield that honors the geometrical configuration between sources, receivers and the image point, or in other words, prestack wave-fields. Extrapolating such wavefields in time, nevertheless, is a big challenge because the radicand can be negative, thus reduce to a complex phase velocity, which will make the rank of the mixed domain matrix very high. Using the vertical offset between the sources and receivers, we introduce a method for deriving the DSR formulation, which gives us the opportunity to derive approximations for the mixed domain operator. The method extrapolates prestack wavefields by combining all data into one wave extrapolation procedure, allowing both upgoing and downgoing wavefields since the extrapolation is done in time, and doesn't have the v(z) assumption in the offset axis of the media. Thus, the imaging condition is imposed by taking the zero-time and zero-offset slice from the multi-dimensional prestack wavefield. Unlike reverse time migration (RTM), no crosscorrelation is needed and we also have access to the subsurface offset information, which is important for migration velocity analysis. Numerical examples show the capability of this approach in dealing with complex velocity models and can provide a better quality image compared to RTM more efficiently.
机译:双平方根(DSR)关系提供了一个平台,以使用扩展的单一波场执行叠前成像该荣誉源,接收器和像点,之间或者换句话说,叠前波场的几何构型。在时间上推断这样的波场,不过,是一个很大的挑战,因为开方可以是负的,从而降低了复杂阶段的速度,这将使得混合域矩阵的秩非常高。使用垂直震源和接收器之间的偏移,我们介绍推导DSR配方,这使我们有机会来推导近似的混合域操作的方法。该方法通过外推所有数据组合成一个波外推过程,同时允许上行和由于外插在时间上完成的,并且不具有在媒体的偏移轴线的V(z)的假设下行波场叠前波场。因此,成像条件是由从多维叠前波场以零时间和零偏移切片强加的。不像逆时偏移(RTM),没有互相关需要,我们还可以使用地下偏移信息,其是用于偏移速度分析重要。算例表明这种方法的能力,处理复杂的速度模型,并能提供更有效地相比,RTM更好的图像质量。

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