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Water Flooding and Viscous Fingering in Fracture and Porous Media by Lattice Boltzmann Method

机译:晶格Boltzmann方法骨折和多孔介质中的水驱和粘性手指

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The study of fluid front in porous media in enhanced oil recovery is important. The purpose of this study is to simulate water flooding, and investigate the factors affecting the fluid front across a microfracture and simple porous media using Shan-Chen type of the Lattice Boltzmann Method (LBM). Various factors, including velocity and dynamic viscosity that define the capillary number and wettability are considered. Independently, the increase in velocity and dynamic viscosity ratio results in viscous fingering and its narrowness. Increasing the wettability of the displacing fluid decreases viscous fingering, and as a result, it makes the fluid move in piston form. The lowest sweep efficiency occurs when the displacing fluid has a neutral wettability. Simulation results show the strength and accuracy of Shan-Chen type of LBM in fluid front tracking in porous media in pore scale.
机译:在增强的采油中,多孔介质中流体前部的研究很重要。 本研究的目的是模拟水淹水,并研究使用山辰型晶格Boltzmann方法(LBM)的微折叠和简单多孔介质影响流体前方的因素。 考虑了各种因素,包括定义毛细数量和润湿性的速度和动态粘度。 独立地,速度和动态粘度比的提高导致粘性指法及其狭窄。 提高位移流体的润湿性降低了粘性指法,结果,它使流体以活塞形式移动。 当移位流体具有中性润湿性时,发生最低的扫效效率。 仿真结果表明,孔隙尺度多孔介质流体前跟踪中Shan-Chen型LBM的强度和准确性。

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