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Waveform-based AVO inversion and AVO prediction-error

机译:基于波形的AVO反演和AVO预测误差

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摘要

A practical approach to linear prestack seismic inversion in the context of a locally 1-D earth is employed to use amplitude variation with offset (AVO) information for the direct detection in hydrocarbons. The inversion is based on the three-term linearized approximation to the Zoeppritz equations. The normal-incidence compressional-wave reflection coefficient R_o models the background reflectivity in the absence of hydrocarbons and incorporates the mudrock curve and Gardner's equation. Prediction-error parameters, ΔR_(sh) and ΔR_ρ, represent perturbations in the normal-incidence shear-wave reflection coefficient and the density contribution to the normal incidence reflectivity, respectively, from that predicted by the mudrock curve and Gardner's equation. This prediction-error approach can detect hydrocarbons in the absence of an overall increase in AVO, and in the absence of bright spots, as expected in theory. Linear inversion is applied to a portion of a young, Tertiary, shallow-marine data set that contains known hydrocarbon accumulations. Prestack data are in the form of angle stack, or constant offset-to-depth ratio, gathers. Prestack synthetic seismograms are obtained by primaries-only ray tracing using the linearized approximation to the Zoeppritz equations to model the reflection amplitudes. Where the a priori assumptions hold, the data are reproduced with a single parameter R_o. Hydrocarbons are detected as low impedance relative to the surrounding shales and the downdip brine-filled reservoir on R_o, also as positive perturbations (opposite polarity relative to R_o) on ΔR_(sh) and ΔR_ρ. The maximum perturbation in ΔR_(sh) from the normal-incidence shear-wave reflection coefficient predicted by the a priori assumptions is 0.0.8. Hydrocarbon detection is achieved, although the overall seismic response of a gas-filled thin layer shows a decrease in amplitude with offset (angle). The angle-stack data (70 prestack ensembles, 0.504-1.936 s time range) are reproduced with a data residual that is 7 dB down. Reflectivity-based prestack seismograms properly model a gas/water contact as a strong increase in AVO and a gas-filled thin layer as a decrease in AVO.
机译:采用一种在局部一维地球环境中进行线性叠前地震反演的实用方法,将带偏移的振幅变化(AVO)信息用于直接检测烃类。反演基于Zoeppritz方程的三项线性近似。垂直入射压缩波反射系数R_o模拟了不存在烃类时的背景反射率,并结合了泥岩曲线和Gardner方程。预测误差参数ΔR_(sh)和ΔR_ρ分别表示由泥岩曲线和Gardner方程预测的法向入射剪切波反射系数的扰动和密度对法向入射反射率的贡献。如理论上预期的那样,这种预测误差方法可以在AVO总体不增加和亮点不存在的情况下检测碳氢化合物。线性反演应用于包含已知油气藏的年轻第三纪浅海数据集的一部分。叠前数据以角度叠层或恒定的偏移深度比的形式收集。使用Zoeppritz方程的线性近似值,通过仅初等射线追踪获得叠前合成地震图,以对反射振幅进行建模。在先验假设成立的情况下,使用单个参数R_o再现数据。相对于周围的页岩和R_o向下浸入盐水的储层,碳氢化合物被检测为低阻抗,并且在ΔR_(sh)和ΔR_ρ上也被检测为正扰动(相对于R_o为相反极性)。根据先验假设预测的法向入射剪切波反射系数,ΔR_(sh)的最大摄动为0.0.8。尽管填充了气体的薄层的整体地震响应显示出振幅随偏移(角度)减小而得以实现,但仍可实现烃类检测。角度堆栈数据(70个堆栈前合奏,0.504-1.936 s的时间范围)的数据残差降低了7 dB。基于反射率的叠前地震图正确地将气/水接触建模为AVO的强烈增加,将充满气体的薄层建模为AVO的减少。

著录项

  • 来源
    《Geophysics》 |1996年第6期|p.1575-1588|共14页
  • 作者单位

    Bureau of Economic Geology, University Station, Box X, Austin, TX 78713-7908;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-18 00:20:13

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