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首页> 外文期刊>Transport in Porous Media >Gravity Effect on Two-Phase Immiscible Flows in Communicating Layered Reservoirs
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Gravity Effect on Two-Phase Immiscible Flows in Communicating Layered Reservoirs

机译:重力对层状油藏连通两相不混溶流动的影响

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摘要

An upscaling method is developed for two-phase immiscible incompressible flows in layered reservoirs with good communication between the layers. It takes the effect of gravity into consideration. Waterflooding of petroleum reservoirs is used as a basic example for application of this method. An asymptotic analysis is applied to a system of 2D flow equations for incompressible fluids at high-anisotropy ratios, but low to moderate gravity ratios, which corresponds to the most often found reservoir conditions. The 2D Buckley-Leverett problem is reduced to a system of 1D parabolic equations in a layered reservoir. For low-gravity ratios, it can further be reduced to a system of hyperbolic equations. The number of the 1D equations in the system is equal to the number of layers in the reservoir. The method is tested on different examples of displacement in a layer-cake reservoir. Different combinations of gravity-viscous and anisotropy ratios are tested. Solutions by our method are compared with the results of 2D simulations carried out by the COMSOL solver. The results are comparable, especially if the layers of the reservoirs are further subdivided into sublayers, in order to account better for gravity segregation. The effects of gravity are analyzed.
机译:针对分层储层中两相不可混溶不可压缩流,各层之间具有良好的连通性,提出了一种放大方法。它考虑了重力的影响。石油储层注水被用作该方法的基本实例。渐进分析适用于二维流方程系统,用于高各向异性比但低至中等重力比的不可压缩流体,这对应于最常发现的储层条件。二维Buckley-Leverett问题简化为分层储层中的一维抛物线方程组。对于低重力比,可以将其进一步简化为双曲方程组。系统中一维方程的数量等于储层中的层数。该方法在层状储层中的不同位移实例上进行了测试。测试了重力-粘度和各向异性比率的不同组合。我们的方法的解决方案与COMSOL求解器进行的2D模拟的结果进行了比较。结果是可比的,特别是如果将储层进一步细分为子层,以便更好地解决重力偏析问题。分析了重力的影响。

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