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Deepwater reservoir heterogeneity delineation using rock physics and extended elastic impedance inversion: Nile Delta case study

机译:利用岩石物理学和扩展弹性阻抗反演描述深水储层非均质性:尼罗河三角洲案例研究

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Deepwater channel reservoirs in the Nile Delta are delineated using extended elastic impedance inversion (EEI). We used the following workflow: seismic spectral blueing, rock physics and amplitude variation with offset modeling, seismic EEI and interpretation of the inverted cubes in terms of geologic facies, net-to-gross ratio, and static connectivity among depositional geobodies. Three subenvironments within the targeted reservoir interval were recognized using a combination of shale volume and λ-ρ-inverted cubes. These were used to generate 3D geobodies and a net-pay thickness map that were used in turn to calculate reservoir volumetrics. The results from the workflow matched well logs and could thus be used to investigate the potential of nearby prospects that have the same geologic settings.
机译:使用扩展的弹性阻抗反演(EEI)描绘了尼罗河三角洲的深水河道水库。我们使用了以下工作流程:地震频谱变蓝,岩石物理和具有偏移量建模的振幅变化,地震EEI以及根据地质相,净毛比和沉积地质体之间的静态连通性对倒置立方进行解释。利用页岩体积和λ-ρ倒置立方体的组合,可以识别出目标储层区间内的三个子环境。这些被用来生成3D地质体和净付厚度图,这些图又被用来计算储层体积。工作流程的结果与测井结果相匹配,因此可用于调查具有相同地质设置的附近勘探区的潜力。

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