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Digital Rock Physics and Challenge in Formation Evaluation of Carbonate Reservoir, Case Study

机译:碳酸盐储层形成评价数字岩体物理与挑战,案例研究

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A project study has been performed in order to evaluate a number of reservoir characterization and petrophysical parameters using Digital Rock Physics (DRP) technology in complex carbonate reservoir, on-shore Abu Dhabi. High-resolution images (X-ray micro-tomographic) of the rock’s pores and mineral grains were obtained, processed and the rock properties were evaluated by numerical simulation of the physical processes of interest at the pore scale. The selection of core samples in carbonate reservoir was performed with considering reservoir rock type, logs and routine core analysis data for validation and application phase. A set of special core analysis (SCAL) data were acquired earlier on the core samples in different carbonate reservoir rock types of varying levels of heterogeneity, lithology, porosity, and absolute permeability. This set of measurements formed the baseline for our validation study, then similar DRP approach and improvement is applied for non-SCAL cores. This process is used in DRP study to evaluate cementation exponents ‘m’, saturation exponents ‘n’, water-oil relative permeabilities, capillary pressures and elastic parameters such as compressional/shear wave velocities.
机译:已经进行了一个项目研究,以便在复杂的碳酸盐储层中使用数字岩体物理(DRP)技术,在岸上的Abu Dhabi中评估许多使用数字岩体物理学(DRP)技术的储层表征和岩石物理参数。通过在孔隙级的物理过程的数值模拟中,得到了岩石孔和矿物晶粒的高分辨率图像(X射线微断层),并通过数值模拟评估了孔隙率的物理过程的数值模拟。考虑验证和应用阶段的储层岩石型,日志和常规核心分析数据,进行碳酸盐储层中核心样本的选择。在不同碳酸盐储层岩石类型的核心样品上提前获得了一组特殊核心分析(SCAS)数据,其不同级别的异质性,岩性,孔隙率和绝对渗透率。这组测量为我们的验证研究形成了基线,然后应用了类似的DRP方法和改进,适用于非校长核心。该方法用于DRP研究,评估胶结指数的胶结指数'M',饱和指数的N',水 - 油相对渗透率,毛细管压力和弹性参数,例如压缩/剪切波速度。

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