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Subsalt imaging using TTI reverse time migration

机译:使用TTI逆时偏移进行盐下成像

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摘要

TTI depth imaging technology is routinely applied to image structures that lie beneath dipping, anisotropic overburden in the Canadian Foothills (Vestrum and Vermeulen, 2004), the North Sea (Hawkins et al., 2002), and offshore West Africa (Ball, 1995). Until now, ray-based migration algorithms served as the only choice for TTI imaging because upgrading ray-based imaging algorithms for TTI is straightforward and incurs minor additional computational cost. Unlike ray-based algorithms, TTI wave-based algorithms are difficult to formulate, and their implementations are often unstable and computationally intensive. Unfortunately, ray-based algorithms perform poorly in comparison to wave-based algorithms in imaging structures beneath a complex overburden such as the salt canopy in the Gulf of Mexico. However, the use of TTI imaging in this area is impeded by the lack of appropriate check shots and offset VSPs that can constrain anisotropic parameters.
机译:TTI深度成像技术通常应用于位于加拿大山麓地区(Vestrum和Vermeulen,2004年),北海(Hawkins等人,2002年)和西非近海(Ball,1995年)的下倾,各向异性覆盖层之下的图像结构。 。迄今为止,基于射线的迁移算法一直是TTI成像的唯一选择,因为升级基于TTI的基于射线的成像算法非常简单,并且会产生少量额外的计算成本。与基于射线的算法不同,基于TTI波的算法难以公式化,其实现通常不稳定且计算量大。不幸的是,与基于波的算法相比,基于射线的算法在成像复杂覆盖层(如墨西哥湾的盐盖)下的结构时性能较差。但是,由于缺乏适当的检查镜头和可能限制各向异性参数的偏移VSP,TTI成像在该领域的使用受到了阻碍。

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