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Optimization of contact angle and interfacial tension measurements for fluid/rock systems at ambient conditions

机译:优化环境条件下流体/岩石系统的接触角和界面张力测量

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摘要

Quantification of interfacial tension (IFT) and contact angles is essential to characterize reservoir fluid-fluid and rock-fluid interactions. However, these measurements are highly dependent on chemical structure, surface residues, system conditions, flow dynamics and interface interactions. Interfacial interactions are specifically important for secondary and tertiary oil recovery processes where water or brine is injected to recover residual oil through complex multi-phase - rock/brine/oil- interactions Due to the delicate interactions across the interfaces, these systems are subjected to variations and inconsistencies that might be difficult to eliminate, thus, affecting the reliability, reproducibility, and certainty of the data. Therefore, reliable measurements need to eliminate fundamental sources of error and remove surface contaminants. To optimize these measurements, the presented methods take a holistic approach to carefully and reliably optimize the procedure for interfacial tension and contact angle measurements for fluid-fluid and rock-fluid interaction studies at ambient conditions (22.0?±?2?°C and atmospheric pressure).?The presented method ensures minimization of impurities that alter interfacial tension measurements;?Enhanced preparation for tested surfaces for contact angle measurements, and;?Optimization of procedure at ambient conditions.
机译:界面张力(IFT)和接触角的量化对于表征储层流体-流体和岩石-流体相互作用至关重要。但是,这些测量高度依赖于化学结构,表面残留物,系统条件,流动动力学和界面相互作用。界面相互作用对于二次和三次采油过程特别重要,在二次采油和三次采油过程中,注入水或盐水以通过复杂的多相-岩石/盐水/油-相互作用来采收残余油。以及可能难以消除的不一致,从而影响数据的可靠性,可重复性和确定性。因此,可靠的测量需要消除基本的误差源并去除表面污染物。为了优化这些测量,本文提出的方法采用整体方法来认真可靠地优化在环境条件(22.0?±?2?°C和大气压)下进行流体-流体和岩石-流体相互作用研究的界面张力和接触角测量程序。所提出的方法可确保将改变界面张力测量的杂质减至最少;加强对被测表面的接触角测量的准备,以及在环境条件下的优化程序。

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