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Anisotropic elastic full-waveform inversion of walkaway vertical seismic profiling data from the Arabian Gulf

机译:阿拉伯湾走动垂直地震剖面数据的各向异性弹性全波形反演

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摘要

Borehole seismic addresses the need for high-resolution images and elastic parameters of the subsurface. Full-waveform inversion of vertical seismic profile data is a promising technology with the potential to recover quantitative information about elastic properties of the medium. Full-waveform inversion has the capability to process the entire wavefield and to address the wave propagation effects contained in the borehole datamulti-component measurements; anisotropic effects; compressional and shear waves; and transmitted, converted, and reflected waves and multiples. Full-waveform inversion, therefore, has the potential to provide a more accurate result compared with conventional processing methods. We present a feasibility study with results of the application of high-frequency (up to 60 Hz) anisotropic elastic full-waveform inversion to a walkaway vertical seismic profile data from the Arabian Gulf. Full-waveform inversion has reproduced the majority of the wave events and recovered a geologically plausible layered model with physically meaningful values of the medium.
机译:井眼地震解决了对高分辨率图像和地下弹性参数的需求。垂直地震剖面数据的全波形反演是一种很有前途的技术,具有恢复有关介质弹性特性的定量信息的潜力。全波形反演具有处理整个波场并解决井眼数据多分量测量中包含的波传播效应的能力;各向异性效应压缩波和剪切波;以及传输,转换和反射的波及倍数。因此,与传统的处理方法相比,全波形反演具有提供更准确结果的潜力。我们提出了一项可行性研究,并将高频(高达60 Hz)各向异性弹性全波形反演应用于来自阿拉伯湾的垂直地震剖面数据。全波形反演已再现了大部分的波浪事件,并恢复了具有合理物理意义的介质的地质合理的分层模型。

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