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Prestack 3D and 4D seismic inversion for reservoir static and dynamic properties

机译:储层静态和动态特性的叠前3D和4D地震反演

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摘要

We present a successful case study in which prestack 3D and 4D simultaneous AVO inversion is used in conjunction with rock-physics analysis to estimate saturation and pressure changes in a West Africa brownfield using time-lapse (4D) seismic as input. We show that, in 4D seismic, there can be many competing production effects that can be difficult to disentangle using traditional 4D interpretation methods, such as amplitude differences between the base and monitors. This begs the need for a more sophisticated approach to decouple these competing effects, such as the use of prestack simultaneous 3D and 4D inversions. Multiple substack seismic data are used to estimate a variety of 3D and 4D petroelastic attributes for mapping static and dynamic reservoir properties with the primary objective of influencing the continuous infill drilling and the overall reservoir management strategy. Facies-specific low-frequency models were used as priors for the 3D inversion, while velocity changes from time-lapse time shifts were used as priors for the 4D inversion. We also demonstrate the use of rock-physics templates coupled with a lithology-specific Gassmann fluid-substitution method to establish a nonlinear regression-based rock-physics model that obeys bound theory from classical rock physics and honors single and multimineral fluid-substitution theory. The resulting templates, when integrated with the prestack AVO-inversion technique, produce a set of attributes that accurately explain the time-lapse production effects observed on seismic.
机译:我们提供了一个成功的案例研究,其中使用叠前3D和4D同步AVO反演与岩石物理分析结合使用时移(4D)地震作为输入来估算西非褐地的饱和度和压力变化。我们表明,在4D地震中,可能会有许多竞争性的生产效果,使用传统的4D解释方法可能难以解开,例如底座和显示器之间的振幅差异。这就需要一种更复杂的方法来解耦这些相互竞争的影响,例如使用叠前同时进行的3D和4D反转。多个子叠层地震数据用于估计各种3D和4D岩石弹性属性,以绘制静态和动态油藏属性,其主要目的是影响连续填充钻探和整体油藏管理策略。特定相的低频模型被用作3D反演的先验,而时移时移引起的速度变化被用作4D反演的先验。我们还演示了岩石物理模板与特定于岩性的Gassmann流体替代方法的结合使用,以建立基于非线性回归的岩石物理模型,该模型服从经典岩石物理学的约束理论,并尊重单矿物和多矿物流体替代理论。将结果模板与叠前AVO反演技术集成后,可以产生一组属性,这些属性可以准确地解释在地震中观察到的随时间推移的生产效应。

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