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Flow properties of sandstone and carbonate rocks by X-ray computed tomography

机译:X射线计算机断层摄影术在砂岩和碳酸盐岩中的流动特性

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We report the use of X-ray micro-CT and numerical simulations for studying the reservoir properties of sandstone and carbonate rocks in the Melekess depression of the Volga-Ural anteclise, Russia. To simulate the flow of a viscous fluid in the pore scale, we use a mathematical model which consists of the continuity equation, stationary Navier-Stokes equations and Darcy law. As a result of computational micro-scale experiments on digital three-dimensional images of sandstone, we get satisfactory compatible permeability coefficients, which are calculated using Navier-Stokes and Kozeny-Carman equations. Carbonates with fracture porosity reveals significant variations in permeability coefficients, calculated by the two methods. The Kozeny-Carman equation can describe the flow properties of carbonates with a predominantly matrix porosity. It is shown that a pronounced heterogeneity of the pore space leads to the representative elementary volume for permeability coefficient in carbonates several times larger than in sandstones.
机译:我们报告了使用X射线显微CT和数值模拟研究俄罗斯伏尔加河-乌拉尔前缘的Melekess凹陷的砂岩和碳酸盐岩石的储层特性。为了模拟粘性流体在孔尺度上的流动,我们使用了一个数学模型,该数学模型由连续性方程,平稳的Navier-Stokes方程和达西定律组成。通过对砂岩数字三维图像进行微尺度计算的结果,我们获得了令人满意的相容渗透系数,该系数是使用Navier-Stokes和Kozeny-Carman方程计算的。用两种方法计算出的具有裂缝孔隙度的碳酸盐显示出渗透系数的显着变化。 Kozeny-Carman方程可以描述主要具有基质孔隙度的碳酸盐岩的流动特性。结果表明,孔隙空间的非均质性导致碳酸盐岩渗透率系数的代表性基本体积比砂岩大几倍。

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