首页> 外文期刊>Journal of Surfactants and Detergents >Toward A Mechanistic Understanding of Re-Infiltration in Naturally Fractured Reservoirs withSurfactant-AidedGravity Drainage Process
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Toward A Mechanistic Understanding of Re-Infiltration in Naturally Fractured Reservoirs withSurfactant-AidedGravity Drainage Process

机译:对具有耐压性储层储存过程的自然裂缝储层重新渗透的机械理解

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摘要

Surfactant-aided gravity drainage is an improved oil recovery technique for water-invaded zone in fractured carbonate reservoirs, which are mostly oil-wet or mixed-wet rocks. The re-infiltration mechanism in water-invaded zone has a considerable effect on oil vertical movement in gravity drainage processes. In this work, a mechanistic understanding of re-infiltration in surfactant-aided gravity drainage, in comparison to oil-water gravity drainage is presented using an experimentally and numerically validated model. A column model is constructed from three matrix blocks. These blocks are separated from each other by horizontal fractures. A storage tank is considered on top of the model to store depleted oil from matrix blocks. The stacked-blocks model for re-infiltration is validated and verified to simulate water and chemical flooding using a mesh independency study and experimental flooding data in a composite core experiment. Using this model, several analyses are performed to investigate effects of rock and fluid properties, rock saturation functions, wettability alteration, surfactant adsorption, and capillary continuity on re-infiltration.
机译:表面活性剂辅助重力排水技术是一种改进的碳酸盐岩裂缝性油藏水侵带采油技术,该类油藏主要为油湿或混合湿岩石。在重力排水过程中,水侵带的再渗透机制对石油的垂直运动有很大影响。在这项工作中,通过实验和数值验证的模型,对表面活性剂辅助重力排水与油水重力排水中的再渗透进行了机械理解。柱模型由三个矩阵块构成。这些区块通过水平裂缝相互分离。模型顶部考虑了一个储罐,用于储存基质块中的贫油。利用网格独立性研究和复合岩心实验中的实验驱油数据,验证了叠块再渗透模型,以模拟水驱和化学驱油。利用该模型,进行了若干分析,以研究岩石和流体性质、岩石饱和度函数、润湿性变化、表面活性剂吸附和毛细管连续性对再渗透的影响。

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