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Modeling Oil Recovery for Mixed Macro- and Micro-Pore Carbonate Grainstones

机译:宏观和微观碳酸盐混合碳酸盐岩的采油建模

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摘要

In general, modeling oil-recovery is a challenging problem involving detailed fluid flow calculations with required structural details that challenge current experimental resolution. Recent laboratory experiments on mixed micro- and macro-pore suggest that there is a systematic relationship between remaining oil saturation (ROS) and the fraction of micro-pores. Working with experimental measurements of the pores obtained from X-ray tomography and mercury intrusion capillary pressure porosimetry, we define a digital rock model exemplifying the key structural elements of these carbonate grainstones. We then test two fluid-flow models: invasion percolation model and effective medium model. Although invasion percolation identifies the important impact of macro-pore percolation on permeability, it does not describe the dependence of ROS on micro-pore percentage. We thus modified the effective medium model by introducing a single-parameter descriptor, reff. Oil from pores r ≥ reff is fully removed, while for the remaining pores with r < reff, their contribution is scaled by (r/reff)2. Applying this straightforward physics to pore size distributions for the mixed-pore grainstones reproduces the experimental ROS dependence.
机译:通常,对采油建模是一个挑战性的问题,涉及详细的流体流量计算以及具有挑战当前实验分辨率的所需结构细节。最近对混合的微孔和大孔进行的实验室实验表明,剩余油饱和度(ROS)与微孔分数之间存在系统的关系。通过对X射线断层扫描和压汞法获得的孔隙进行实验测量,我们定义了一个数字岩石模型,举例说明了这些碳酸盐晶粒的关键结构要素。然后,我们测试两个流体流动模型:入侵渗流模型和有效介质模型。尽管入侵渗滤确定了大孔渗滤对渗透率的重要影响,但并未描述ROS对微孔百分比的依赖性。因此,我们通过引入单参数描述符reff修改了有效介质模型。毛孔r≥reff的油被完全清除,而剩余毛孔r 2 缩放。将这种简单的物理方法应用于混合孔晶粒的孔径分布可再现实验性ROS依赖性。

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