首页> 外文期刊>Geophysical Prospecting >Slowness-domain kinematical characteristics for horizontally layered orthorhombic media. Part Ⅱ: Pre-critical slowness match
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Slowness-domain kinematical characteristics for horizontally layered orthorhombic media. Part Ⅱ: Pre-critical slowness match

机译:水平分层斜方介质的慢度域运动学特征。第二部分:临界前慢度匹配

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摘要

Kinematical characteristics of reflected waves in anisotropic elastic media play an important role in the seismic imaging workflow. Considering compressional and converted waves, we derive new, azimuthally dependent, slowness-domain approximations for the kinematical characteristics of reflected waves (radial and transverse offsets, intercept time and traveltime) for layered orthorhombic media with varying azimuth of the vertical symmetry planes. The proposed method can be considered an extension of the well-known 'generalized moveout approximation' in the slowness domain, from azimuthally isotropic to azimuthally anisotropic models. For each slowness azimuth, the approximations hold for a wide angle range, combining power series coefficients in the vicinity of both the normal-incidence ray and an additional wide-angle ray. We consider two cases for the wide-angle ray: a 'critical slowness match' and a 'pre-critical slowness match' studied in Parts I and II of this work, respectively. For the critical slowness match, the approximations are valid within the entire slowness range, up to the critical slowness. For the 'pre-critical slowness match', the approximations are valid only within the bounded slowness range; however, the accuracy within the defined range is higher. The critical slowness match is particularly effective when the subsurface model includes a dominant high-velocity layer where, for nearly critical slowness values, the propagation in this layer is almost horizontal. Comparing the approximated kinematical characteristics with those computed by numerical ray tracing, we demonstrate high accuracy.
机译:各向异性弹性介质中反射波的动力学特征在地震成像工作流程中起着重要作用。考虑到压缩波和转换波,对于垂直对称平面的方位角变化的层正交斜介质,我们针对反射波的运动学特性(径向和横向偏移,截距时间和传播时间)推导了新的,与方位角有关的慢域近似值。所提出的方法可以认为是慢速域中众所周知的“广义时差近似”的扩展,从方位各向同性模型到方位各向异性。对于每个慢度方位角,近似值在广角范围内保持不变,将法向入射光线和其他广角光线附近的幂级数系数组合在一起。对于广角射线,我们考虑两种情况:分别在本文的第一部分和第二部分中研究的“临界慢度匹配”和“临界前慢度匹配”。对于临界慢度匹配,近似值在整个慢度范围内有效,直到临界慢度为止。对于“临界前慢度匹配”,近似值仅在有界慢度范围内有效;但是,在规定范围内的精度较高。当地下模型包括一个主要的高速层时,对于关键的慢度匹配,该速度对于几乎关键的慢度值而言,在该层中的传播几乎是水平的。将近似的运动学特征与通过数值射线追踪计算出的运动学特征进行比较,我们证明了高精度。

著录项

  • 来源
    《Geophysical Prospecting》 |2019年第5期|1134-1162|共29页
  • 作者

    Ravve Igor; Koren Zvi;

  • 作者单位

    Emerson, 820 Gessner Rd,Suite 400, Houston, TX 77024 USA;

    Emerson, 820 Gessner Rd,Suite 400, Houston, TX 77024 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anisotropy; Modeling;

    机译:各向异性;建模;

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