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The microscale analysis of reverse displacement based on digital core

机译:基于数字核的反向位移微观分析

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The recovery of the reservoir is always the center of development because of its renewable characteristic. There are many methods designed to enhance the development of residual hydrocarbon, such as water flooding, polymer flooding, and the adjustment of well pattern. But the microscale mechanisms of fluid flow in porous media is still ambiguous, especially for reverse flooding. So in-situ displacement experiment based on CT scanning was designed in this paper to analyze the trapped oil after various flooding. In pore scale level, the total number of residual oil and average volume were counted. For further observing distribution changes, we classified the shape of residual oil based on shape factor and Euler number, and calculated the corresponding proportion. These results show that the adjustment of flow streamline can effectively improve oil recovery after water forward flooding and polymer displacement. (C) 2016 Published by Elsevier B.V.
机译:由于其可再生特征,储层的恢复始终是发展中心。 有许多方法旨在增强残留烃的发展,例如水驱,聚合物洪水和井图案的调整。 但多孔介质中的流体流动的微观机制仍然是模棱两可的,特别是对于反向洪水。 因此,本文设计了基于CT扫描基于CT扫描的原位位移实验,分析了各种洪水后捕获的油。 在孔隙率水平中,计算剩余油和平均体积的总数。 为了进一步观察分布变化,我们基于形状因子和欧拉数分配残留油形状,并计算相应的比例。 这些结果表明,流动流线的调整可以有效改善水上前洪水和聚合物位移后的采油。 (c)2016年由Elsevier B.V发布。

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