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Electrical Resistivity Index in Multiphase Flow through Porous Media

机译:多孔介质多相流中的电阻率指数

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The simultaneous flow of two phases through a three-dimensional porous medium is calculated by means of a Lattice-Boltzmann algorithm. The time-dependent phase configurations can be derived and also macroscopic quantities such as the relative permeabilities. When one phase only is supposed to be conductive, the Laplace equation which governs electrical conduction can be solved in each phase configuration; an instantaneous value of the macroscopic conductivity is obtained and it is averaged over many configurations. The influence of saturation on the resistivity index is studied for six different samples and two viscosity ratios. The saturation exponent is systematically determined. The numerical results are also compared to other possible models and also to experimental results; finally, they are discussed and criticized.
机译:借助于Lattice-Boltzmann算法计算两相同时流过三维多孔介质的流量。可以导出时间相关的相位配置,还可以导出宏观数量,例如相对磁导率。当仅假设一个相是导电的时,可以在每种相配置中求解控制电导率的拉普拉斯方程。获得宏观电导率的瞬时值,并将其在许多配置中取平均值。对于六个不同的样品和两个粘度比,研究了饱和度对电阻率指数的影响。系统确定饱和度指数。还将数值结果与其他可能的模型以及实验结果进行比较;最后,对它们进行讨论和批评。

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