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Improving the Estimations of Petrophysical Transport Behavior of Carbonate Rocks Using a Dual Pore Network Approach Combined with Computed Microtomography

机译:使用双孔网络方法结合计算机显微断层摄影技术改进碳酸盐岩岩石物理输运行为的估算

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Due to the intricate structure of carbonate rocks, relationships between porosity or saturation and petrophysical transport properties classically used for reservoir estimation and recovery strategies are either very complex or nonexistent. Thus, further understanding of the influence of the rock structure on the petrophysical transport properties becomes relevant. We therefore present a Dual Pore Network approach (D-PNM) applied to μ-CT images of bimodal porous media. The major advantage of this method lies in the fact that it takes into account the real architecture of the connected macropore network as well as the microporosity unresolved by μ-CT imaging. Whereas governing equations are solved in each individual macropore, transport behavior of microporosity is simulated by average quantities. Thus, D-PNM is particularly suited for the investigation of carbonate rocks, characterized by broad pore size distributions. We describe the principles of the image acquisition and network extraction procedure and the governing equations of D-PNM. The model is tested on three carbonate samples, two outcrop, and one reservoir carbonate. Calculated petrophysical transport properties are compared to experimental data and we show that D-PNM correctly reproduces conventional as well as unconventional electrical transport behavior. A major restriction of D-PNM is the requirement of a connected macropore network, that is, especially in the case of carbonates, not always available. Solutions to that are presented.
机译:由于碳酸盐岩的错综复杂的结构,孔隙度或饱和度与岩石物理输运特性之间的关系通常用于储层估算和采收策略,要么非常复杂,要么不存在。因此,进一步了解岩石结构对岩石物性传输特性的影响变得重要。因此,我们提出了一种应用于双峰多孔介质的μ-CT图像的双孔网络方法(D-PNM)。该方法的主要优点在于,它考虑了所连接的大孔网络的实际结构以及μ-CT成像无法解决的微孔问题。尽管在每个单独的大孔中求解了控制方程,但通过平均数量模拟了微孔的传输行为。因此,D-PNM特别适用于碳酸盐岩的研究,其特征是孔径分布宽。我们描述了图像获取和网络提取过程的原理以及D-PNM的控制方程。在三个碳酸盐样品,两个露头和一个储层碳酸盐上测试了该模型。计算的岩石物理输运性质与实验数据进行了比较,我们表明D-PNM正确地再现了常规的和非常规的电输送行为。 D-PNM的主要限制是需要连接大孔网络,也就是说,尤其是在碳酸盐的情况下,并非总是可用。提出了解决方案。

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