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Feasibility of time-lapse AVO and AVOA analysis to monitor compaction-induced seismic anisotropy

机译:可以通过延时aVO和aVOa分析来监测压实引起的地震各向异性

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摘要

Hydrocarbon reservoir production generally results in observable time-lapse physical property changes, such as velocity increases within a compacting reservoir. However, the physical property changes that lead to velocity changes can be difficult to isolate uniquely. Thus, integrated hydro-mechanical simulation, stress-sensitive rock physics models and time-lapse seismic modelling workflows can be employed to study the influence of velocity changes and induced seismic anisotropy due to reservoir compaction. We study the influence of reservoir compaction and compartmentalization on time-lapse seismic signatures for reflection amplitude variation with offset (AVO) and azimuth (AVOA). Specifically, the time-lapse AVO and AVOA responses are predicted for two models: a laterally homogeneous four-layer dipping model and a laterally heterogeneous graben structure reservoir model. Seismic reflection coefficients for different offsets and azimuths are calculated for compressional (P–P) and converted shear (P–S) waves using an anisotropic ray tracer as well as using approximate equations for AVO and AVOA. The simulations help assess the feasibility of using time-lapse AVO and AVOA signatures to monitor reservoir compartmentalization as well as evaluate induced stress anisotropy due to changes in the effective stress field. The results of this study indicate that time-lapse AVO and AVOA analysis can be applied as a potential means for qualitatively and semi-quantitatively linking azimuthal anisotropy changes caused by reservoir production to pressure/stress changes.
机译:碳氢化合物储层的生产通常会导致可观察到的随时间变化的物理性质变化,例如压实储层内的速度增加。但是,导致速度变化的物理特性变化可能很难唯一地隔离。因此,可以采用综合的流体力学模拟,应力敏感的岩石物理模型和时移地震建模工作流程来研究速度变化和由于储层压实引起的地震各向异性的影响。我们研究了储层的压实和分隔对时移地震特征的影响,以反映偏移(AVO)和方位角(AVOA)的反射振幅变化。具体而言,预测了两种模型的时移AVO和AVOA响应:横向均质的四层浸入模型和横向非均质grab陷结构储层模型。使用各向异性射线示踪剂以及AVO和AVOA的近似方程,可以计算压缩波(P-P)和转换剪切波(PS)的不同偏移量和方位角的地震反射系数。这些模拟有助于评估使用延时AVO和AVOA信号来监视储层分隔的可行性,以及评估由于有效应力场的变化而引起的应力各向异性。这项研究的结果表明,时移AVO和AVOA分析可作为定性和半定量地将储层生产引起的方位各向异性变化与压力/应力变化联系起来的潜在手段。

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