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NMR derived capillary pressure and relative permeability curves as an aid in rock typing of carbonate reservoirs

机译:NMR衍生的毛细管压力和相对渗透率曲线作为碳酸盐储层的岩石键入辅助

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摘要

Capillary pressure together with relative permeability curves are key parameters in carbonate reservoirs characterization. They serve as fundamental inputs in petrophysical and reservoir engineering studies such as rock typing, fluid contacts determination and saturation height function generation. In the current study, the NMR-T2 distribution diagrams were inverted to the synthetic capillary pressure and relative permeability curves. The results were compared to the laboratory-derived MICP and Kr curves and a satisfactory agreement was achieved between them. Afterwards, the reservoir rock types were determined from the integration of Conventional Core Analysis(CCAL) results with the NMR-derived Pc and Kr curves. Accordingly, the studied carbonate rocks were classified into four hydraulic flow units. Subsequently, a representative capillary pressure and relative permeability curve was derived for each hydraulic flow unit. The methodology is investigated through a case study of the upper Cretaceous Ilam Formation in the Abadan Plain. The results of this study demonstrated that NMR log contributes to a more precise carbonate reservoirs characterization and reducing uncertainty in reservoir rock typing. Through performing some additional computations and calibration with the core results, worthy information is extractable from NMR log.
机译:毛细管压力与相对渗透率曲线一起是碳酸盐储层表征的关键参数。它们作为岩石物理和储层工程研究中的基本投入,如摇滚打字,流体接触确定和饱和高度函数产生。在目前的研究中,NMR-T2分布图被倒置为合成毛细管压力和相对渗透性曲线。结果将结果与实验室衍生的MICP和KR曲线进行比较,并且在它们之间实现了令人满意的协议。然后,通过NMR衍生的PC和KR曲线集成常规核心分析(CCAL)结果确定储层岩石类型。因此,将研究的碳酸盐岩被分为四个液压流动单元。随后,为每个液压流动单元导出代表性的毛细管压力和相对渗透性曲线。通过对阿巴丹平原的上白垩纪ilam形成的案例研究来研究该方法。该研究的结果表明NMR日志有助于更精确的碳酸盐储层表征和降低水库岩石打字中的不确定性。通过执行一些额外的计算和校准核心结果,有价值的信息可从NMR日志中提取。

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