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Seismic wave characteristics in anisotropic attenuating media .

机译:各向异性衰减介质中的地震波特征。

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摘要

A synthetic seismogram is a tool to investigate seismic wave characteristics in anisotropic attenuating media. A numerical technique for the computation of synthetic seismograms in a homogeneous, as well as in a multilayered anisotropic medium was developed. Full waveform theory is used to compute the synthetic seismograms. The medium can be elastic or viscoelastic. In the latter case, attenuation is introduced by giving materials complex elastic constants. To ensure that there are no false arrivals in the synthetic seismogram, it is important to carefully control the integration kernel singularity points, especially those due to repeated roots of the associated Green-Christoffel equation. A novel approach is developed to safely track the continuity of the integration kernel and, hence, the polarization vectors in critical and supercritical zones.; The reflectivity approach is followed to consider wave propagation in a multilayered medium. A simple and concise implementation of this method is developed. This approach also enables one to investigate frequency dependent reflection coefficients varying with incidence angle and azimuth. The modeling of reflection coefficients in fractured media suggests that amplitude versus offset and azimuth (AVOAz) can be helpful in detecting fractured reservoirs.; In a new development, the effect of attenuation on P- and S-wave radiation patterns in viscoelastic anisotropic media is investigated. The understanding of radiation patterns in homogeneous media is applied to interpret various wave types in attenuating multilayered media. Both the amplitude and the frequency content of the synthetic seismograms are affected by attenuation properties of the media. The spectral decomposition technique is found to be useful in our understanding of the attenuation effects.; Seismic anisotropy in shales is a complex phenomenon. A number of theoretical shale models are investigated to study the effects of clay orientation, aspect ratio of cracks, porosity and fluid types on the synthetic seismograms.
机译:合成地震图是研究各向异性衰减介质中地震波特征的工具。开发了一种数值技术,用于在均质以及多层各向异性介质中计算合成地震图。全波形理论用于计算合成地震图。介质可以是弹性的或粘弹性的。在后一种情况下,通过赋予材料复杂的弹性常数来引入衰减。为了确保合成地震图中没有错误到达,重要的是仔细控制积分核的奇异点,尤其是由于关联的Green-Christoffel方程的重复根而引起的奇异点。开发了一种新颖的方法来安全地跟踪积分内核的连续性,并因此跟踪关键和超临界区域中的极化矢量。遵循反射率方法来考虑波在多层介质中的传播。开发了此方法的简单明了的实现。这种方法还使人们能够研究随入射角和方位角变化的频率相关反射系数。裂缝介质中反射系数的建模表明,振幅与偏移量和方位角(AVOAz)有助于发现裂缝性储层。在一项新进展中,研究了衰减对粘弹性各向异性介质中P波和S波辐射方向图的影响。对均匀介质中辐射方向图的理解可用于解释衰减多层介质中的各种波类型。合成地震图的振幅和频率含量都受介质衰减特性的影响。发现频谱分解技术对于我们理解衰减效果很有用。页岩的地震各向异性是一个复杂的现象。研究了许多理论页岩模型,以研究粘土取向,裂缝纵横比,孔隙度和流体类型对合成地震图的影响。

著录项

  • 作者

    Sinha, Satish.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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