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首页> 外文期刊>International Journal of Engineering Science >An optimal viscosity profile in enhanced oil recovery by polymer flooding
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An optimal viscosity profile in enhanced oil recovery by polymer flooding

机译:通过聚合物驱提高采收率的最佳粘度曲线

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摘要

Forced displacement of oil by polymer flooding in oil reservoir is one of the effective methods of enhanced (tertiary) oil recovery. A classical model of this process within Hele-Shaw approximation involves three-layer fluid in a Hele-Shaw cell having a variable viscosity fluid in the intermediate layer between oil and water. The goal here is to find an optimal viscosity profile of the intermediate layer that almost eliminates the growth of the interfacial disturbances induced by mild perturbation of the permeability field. We derive the dispersion relation and sharp bounds on the growth rate of the interfacial disturbances for an optimal viscosity profile of the intermediate layer. We also discuss how and why an appropriate choice of variable viscous profile in the intermediate layer can mitigate not only the Saffman-Taylor instability but also the tendency of preferential channeling of flow through high permeable region in the heterogeneous case.
机译:在储油层中通过聚合物驱强迫驱油是提高(三次)采油率的有效方法之一。 Hele-Shaw近似中此过程的经典模型涉及Hele-Shaw单元中的三层流体,在油和水之间的中间层中具有可变粘度的流体。这里的目标是找到中间层的最佳粘度分布,该分布几乎消除了由渗透性场的轻微扰动引起的界面扰动的增长。对于中间层的最佳粘度分布,我们推导了界面扰动增长率的色散关系和尖锐边界。我们还讨论了如何以及为什么在中间层中适当选择可变粘度曲线可以缓解Saffman-Taylor不稳定性,而且可以缓解非均质情况下优先通过高渗透区的流体通道的趋势。

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