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Analysis of Microscopic Displacement Mechanisms of Dilute Surfactant Flooding in Oil-wet and Water-wet Porous Media

机译:油湿水多孔介质中稀表面活性剂驱的微观驱替机理分析

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In all the enhanced oil recovery processes, flow of displacing and displaced fluids on a microscopic scale in a petroleum reservoir rock is affected by the wettability of the reservoir rock. Gaining proper knowledge of the dominant microscale multiphase flow mechanisms enables us to better predict the foremost prevailing macroscale flow behavior of the process. This research provides new insights into the effect of wettability on microscopic two-phase flow displacement mechanisms of dilute surfactant flooding using micromodel. It was inferred that the primary mechanisms of dilute surfactant flooding in the oil-wet medium were, intra-pore and inter-pore bridging of the surfactant solution, pore wall transportation of the oleic phase, formation of water-in-oil macroemulsion, and formation of partially continuous surfactant solution which enhanced the oil recovery. In water-wet medium, transportation of oil phase along pore body and neck walls, complete and incomplete inter-pore bridging, and deformation and stringing of the residual oil were the primary mechanisms of dilute surfactant flooding which made the residual oil entrapped in micromodel easily move forward and enhance oil recovery.
机译:在所有提高采油率的过程中,石油储层岩石中微观尺度上的驱替液和驱替液流受储层岩石的润湿性影响。对占主导地位的微观多相流机制的正确了解使我们能够更好地预测该过程的最主要的宏观尺度流动行为。这项研究使用微模型对润湿性对稀薄表面活性剂驱油微观两相流驱替机理的影响提供了新的见解。可以推测,在油湿介质中稀释表面活性剂的主要机理是:表面活性剂溶液的孔内和孔间桥联,油相的孔壁传输,油包水型大乳液的形成,以及形成部分连续的表面活性剂溶液,从而提高了采油率。在水润湿的介质中,油相沿孔隙体和颈壁的输送,孔间桥连的完全和不完全,残油的变形和拉丝是稀释表面活性剂驱油的主要机理,这使得残油容易被微模型截留。向前发展并提高石油采收率。

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