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Deformation of microdroplets in crude oil for rapid screening of enhanced oil recovery additives

机译:原油中微型电流的变形,用于快速筛选增强型油回收添加剂

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摘要

We present a microfluidic method to rapidly screen enhanced oil recovery additives based on the deformation of aqueous microdroplets in oil. Conventional methods, such as the pendant drop method, are hindered by large fluid volumes that require several hours to thermally equilibrate between measurements. Here we demonstrate a complementary technology to conventional methods, by which additives can be rapidly screened to select the best candidates for further study. Our glass chip establishes thermal equilibrium (demonstrated at 80 degrees C) of undiluted, highly viscous, crude oil within seconds, and enables the rapid quantification of water-in-crude oil droplet deformation within minutes, at a reservoir-relevant scale. The influence of two alkaline additives, a surfactant and a salt in the injected water phase were quantified, demonstrating the applicability of our method to a variety of recovery strategies.
机译:我们提出了一种微流体方法,以基于油中的微量滴水的变形来快速筛选增强的油回收添加剂。 诸如悬垂方法的常规方法被需要几小时在测量之间进行热平衡的大流体体积受阻。 在这里,我们向常规方法证明了一种互补的技术,可以快速筛选添加剂以选择进一步研究的最佳候选者。 我们的玻璃芯片在几秒钟内建立了未稀释,高粘度,原油的热平衡(在80℃下展示),并在储层相关规模中能够在几分钟内快速定量含水原油液滴变形。 量化了两种碱性添加剂,表面活性剂和盐的影响,展示了我们对各种恢复策略的应用。

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