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Influence of Error in Estimating Anisotropy Parameters on VTI Depth Imaging

机译:估计vTI深度成像的各向异性参数的误差影响

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摘要

Thin layers in sedimentary rocks lead to seismic anisotropy which makes the wave velocity dependent on the propagation angle. This aspect causes errors in seismic imaging such as mispositioning of migrated events if anisotropy is not accounted for. One of the challenging issues in seismic imaging is the estimation of anisotropy parameters which usually has error due to dependency on several elements such as sparse data acquisition and erroneous data with low signal-to-noise ratio. In this study, an isotropic and anelliptic VTI fast marching eikonal solvers are employed to obtain seismic travel times required for Kirchhoff depth migration algorithm. The algorithm solely uses compressional wave. Another objective is to study the influence of anisotropic errors on the imaging. Comparing the isotropic and VTI travel times demonstrates a considerable lateral difference of wavefronts. After Kirchhoff imaging with true anisotropy, as a reference, and with a model including error, results show that the VTI algorithm with error in anisotropic models produces images with minor mispositioning which is considerable for isotropic one specifically in deeper parts. Furthermore, over- or underestimating anisotropy parameters up to 30 percent are acceptable for imaging and beyond that cause considerable mispositioning.
机译:沉积岩中的薄层导致地震各向异性,使波速取决于传播角度。这方面导致地震成像中的错误,例如如果没有占各向数,则失去迁移事件。地震成像中的一个具有挑战性的问题是估计各向异性参数,这通常具有由于诸如稀疏数据采集和具有低信噪比的稀疏数据采集和错误数据的若干元素而产生的误差。在该研究中,使用快速游行的各向同性和肛门静脉VTI快速游行Eikonal溶剂来获得Kirchhoff Depth Migration算法所需的地震行程时间。该算法仅使用压缩波。另一个目的是研究各向异性误差对成像的影响。比较各向同性和VTI旅行时间展示了波前的相当大的横向差异。在Kirchhoff成像以真正的各向异性成像之后,作为参考,并且具有包括误差的模型,结果表明,各向异性模型中具有误差的VTI算法产生具有轻微失置的图像,其专门在深层部分地具有轻微的失值。此外,对于成像和超出这一点可接受的,过度或低估的各向异性参数可接受,导致显着失值。

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