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Stability Analysis of Uniform Equilibrium Foam States for EOR Processes

机译:EOR过程的均匀平衡泡沫状态的稳定性分析

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摘要

The use of foam for mobility control is a promising mean to improve sweep efficiency in EOR. Experimental studies discovered that foam exhibits three different states (weak foam, intermediate foam, and strong foam). The intermediate-foam state is found to be unstable in the lab whereas the weak- and strong-foam states are stable. The model of Kam (Colloids Surf A Physicochem Eng Asp 318(1-3): 62-77, 2008) is the only mechanistic foam model that can fit a variety of steady-state experimental data including multiple steady states. This model is modified from a previous mechanistic foam model to resolve the intrinsic instability of the strong-foam state. Simple finite-difference simulations have found that an arbitrary perturbation grows for the unstable intermediate foam but diminishes for the strong- and weak-foam states. The issue of the stability of foam states, especially the strong-foam state, is a serious concern in application of foam in EOR. Instabilities may rule out one or more states and consequently have considerable effect on reservoir sweep efficiency and injection pressure. Here, for the first time the stability of the various equilibrium foam states is investigated by an analytical stability-analysis method together with numerical simulations. We demonstrate the instability of most intermediate states, consistent with the laboratory observations. However, our analysis reveals an instability of the strong-foam state. We show that the diffusion, whether introduced artificially by the finite-difference scheme or representing physical dispersion, damps this instability. We obtain good agreement with finite-element simulations with and without additional diffusion. We also prove that all states are unconditionally stable for a local-equilibrium-foam model.
机译:使用泡沫来控制迁移率是提高EOR扫掠效率的有前途的手段。实验研究发现,泡沫表现出三种不同的状态(弱泡沫,中间泡沫和强泡沫)。在实验室中发现中等泡沫状态不稳定,而弱泡沫和强泡沫状态稳定。 Kam模型(Colloids Surf A Physicochem Eng Asp 318(1-3):62-77,2008)是唯一可以拟合包括多种稳态在内的多种稳态实验数据的机械泡沫模型。该模型是对以前的机械泡沫模型的修改,以解决强泡沫状态的内在不稳定性。简单的有限差分模拟已经发现,不稳定的中间泡沫会产生任意扰动,而强泡沫和弱泡沫状态会减小扰动。泡沫状态,特别是强泡沫状态的稳定性问题,是在EOR中使用泡沫的一个严重问题。不稳定性可能会排除一种或多种状态,因此对储层吹扫效率和注入压力有相当大的影响。在这里,首次通过分析稳定性分析方法和数值模拟研究了各种平衡泡沫状态的稳定性。我们证明了大多数中间状态的不稳定性,与实验室观察结果一致。但是,我们的分析揭示了强泡沫状态的不稳定性。我们表明,无论是通过有限差分方案人为引入的扩散还是代表物理扩散的扩散,都可以缓解这种不稳定性。我们在有无附加扩散的情况下与有限元模拟取得了良好的一致性。我们还证明,对于局部平衡泡沫模型,所有状态都是无条件稳定的。

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