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Deconvolution and correlation-based interferometric redatuming by wavefield inversion

机译:波场反演基于反卷积和相关性的干涉法重新基准

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摘要

Seismic interferometry is a method to retrieve Green’s functions for sources (or receivers) where there are only receivers (or sources, respectively). This can be done by correlationor deconvolution-based methods. In this work we present anew approach to reposition the seismic array from the earth’s surface to an arbitrary datum at depth using the one-way reciprocity theorems of convolution and correlation type. The redatuming process is done in three steps: (a) retrieving the downward Green’s function for sources at the earth’s surfaceand receivers at the datum, (b) retrieving the corresponding upward Green’s function, and (c) retrieving the reflected upward wavefield for sources and receivers at the datum. Input for steps (a) and (b) are the surface data and wavefields simulated in a velocity model of the datum overburden. Step (c)uses the responses of steps (a) and (b) as input data in the convolution-based interferometric equation. The method accounts for inhomogeneities in the overburden medium, thus reducing anticausal events and artefacts as compared to a purely correlation-based procedure.
机译:地震干涉法是一种为只有接收器(或多个源)的源(或接收器)检索格林函数的方法。这可以通过基于相关器或反卷积的方法来完成。在这项工作中,我们提出了一种新方法,即使用卷积和相关类型的单向互易定理,将地震阵列从地表重新定位到深度处的任意基准。重新确定基准的过程分为三个步骤:(a)检索地球表面的源的向下格林函数和基准面上的接收器,(b)检索相应的向上格林函数,以及(c)检索源的反射向上波场,以及基准面上的接收器。步骤(a)和(b)的输入是在基准覆盖层速度模型中模拟的表面数据和波场。步骤(c)将步骤(a)和(b)的响应用作基于卷积的干涉方程式中的输入数据。该方法解决了覆盖层介质中的不均匀性,因此与基于纯相关性的过程相比,减少了因果关系事件和伪影。

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