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首页> 外文期刊>Journal of natural gas science and engineering >Contrasting phase field method and pairwise force smoothed particle hydrodynamics method in simulating multiphase flow through fracture-vug medium
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Contrasting phase field method and pairwise force smoothed particle hydrodynamics method in simulating multiphase flow through fracture-vug medium

机译:通过裂纹 - Vug介质模拟多相流动的对比相场法和成对力平滑颗粒流体动力学方法

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摘要

Strong heterogeneity and anisotropy result in complex flow and relatively low oil recovery in fractured-vuggy reservoirs. In this work, we assess the Cahn-Hilliard phase field method (PFM) and the pairwise force smoothed particle hydrodynamics (PF-SPH) method in modeling 2D multiphase flow through fracture-vug medium, in terms of different capillary numbers, mobility ratios, gravity, and wettability. Comparing the results of numerical simulations and physical experiments, the results of the PF-SPH method are closer to the physical experimental displacement process than those of the PFM, and the PF-SPH method is found to be computationally more efficient and accurate than the PFM. The experimental and numerical results reveal that when the injection velocity, represented via logarithm of the capillary number (LCN), is not greater than-4 (gas phase case) or-2.3 (water phase case) in the fracture-vug medium, the gravitative differentiation of the oil-gas or oil water is significant, and the oil-gas or oil-water flow is a stable stratified flow. When the injection velocity LCN exceeds-3 (gas phase case) or-1.3 (water phase case) in the vertical section, the gravitative differentiation of the oil-gas or oil-water is not obvious, and the fluid flow pattern appears as an unstable jet flow.
机译:强烈的异质性和各向异性导致复杂的流量和骨折洞穴储层中的储蓄相对低。在这项工作中,我们评估CAHN-HILLIARD期间方法(PFM)和成对力平滑粒子流体动力学(PF-SPH)方法,通过骨折 - Vug介质在不同的毛细管数,移动比率,重力和润湿性。比较数值模拟和物理实验的结果,PF-SPH方法的结果比PFM的实验位移过程更接近物理实验位移过程,并且发现PF-SPH方法比PFM计算更有效和准确。实验性和数值结果表明,当通过毛细管数(LCN)的对数表示的注射速度不大于-4(气相壳)或-2.3(水相壳)中的骨折 - 波纹介质,所以油气或油水的重力分化是显着的,油气或油流量是稳定的分层流动。当注射速度LCN超过-3(气相壳体)或-1.3(水相位)在垂直部分中时,油气或油水的重力分化不明显,流体流动模式显示为不稳定的喷射流。

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