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Imaging with Downgoing and Upgoing Wavefield - 2D Prestack Mirror and Reciprocal Shot Migration

机译:与正在进行的和上路波场成像 - 2D Prestack镜像和互惠射击迁移

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The traditional geometry for nodes acquisition is a sparse receiver spacing and dense shooting. However, in the presence of salt sediments this geometry can lead to poor illumination.An efficient solution for this problem is the use of downgoing waves which enables a wider coverage of the subsurface. This paper presents an application of the mirror migration method, which uses the downgoing wavefield (ghost reflections), in conjunction with the reciprocal shot migration technique (upgoing wavefield) to better illuminate structures below salt sediments. In order to increase the illumination, both migration results are summed and analyzed. It is also evaluated the influence of increasing the receiver spacing. The migration results using downgoing wavefield and the summation of both techniques (reciprocal and mirrored migration) generated better images of deep reflectors than using only the upgoing wavefield (conventionally, the only wavefield used). This work aims to provide a better understanding of the advantages in combining both techniques (upgoing and downgoing) with wave equation migration methods.
机译:为节点采集传统的几何形状是一个稀疏的接收器间距和密集射击。然而,在盐沉积物这种几何形状可导致针对此问题差illumination.An有效的解决方案的存在是使用下行波使地下的较宽的覆盖。本文介绍了反射镜的迁移方法,其采用的下行波场(虚反射),在与所述倒数炮偏移技术(上行波场),以下面的盐沉积物更好地阐明结构结合的应用。为了增加照明,既迁移结果相加并进行分析。它也评估增加接收器间距的影响。使用下行波场和两种技术的总和(倒数和镜像迁移)的迁移的结果产生的深反射器更好的图像比仅使用上行波场(通常,唯一的波场中使用)。这项工作旨在相结合两种技术(上行和下行)与波动方程偏移方法提供了一个更好地了解的优势。

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