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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Thermodynamic modeling of the temperature impact on low-salinity waterflooding performance in sandstones
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Thermodynamic modeling of the temperature impact on low-salinity waterflooding performance in sandstones

机译:热力学建模对砂岩下低盐度水性性能的温度影响

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Low-salinity waterflooding has emerged as an innovative technique to improve oil recovery. Extensive research has been devoted to providing a better understanding of the mechanisms involved and to optimize its performance. Among those mechanisms, multi-component ion exchange mechanism explains the coordination of surface complexes in a way that highlights the essence of low-salinity waterflooding. However, the impact of temperature on low-salinity waterflooding is still poorly understood. We used surface complexation modeling to study both the oil/brine and mineral/brine interfaces up to a temperature of 150 degrees C. Given the heterogeneity of the oil interface, we studied three oil interfaces with varying total base number to total acid number ratios. It was determined that temperature is a critical factor in estimating the performance of low-salinity waterflooding. While temperature reduces the pH range at which low-salinity waterflooding yields positive effect for basic oil, it shifts the pH window at which low-salinity waterflooding has potentially negative results to lower pH values for neutral oil. In addition, the temperature magnifies the ability of low-salinity waterflooding to enhance surface potential. Our results support the need for conducting experimental work at the relevant reservoir temperature to evaluate the performance of low-salinity waterflooding.
机译:低盐度水灌木已经成为一种改善溢油的创新技术。广泛的研究已经致力于更好地了解所涉及的机制并优化其性能。在这些机制中,多组分离子交换机制解释了表面配合物的协调,以突出低盐度水上的本质。然而,温度对低盐度的影响仍然不知所决。我们使用表面络合模型来研究油/盐水和矿物/盐水界面高达150℃的温度。鉴于油界面的异质性,我们研究了三种油界面,与总酸值数比不同。确定温度是估计低盐度的性能的关键因素。虽然温度降低了低盐度的pH范围,其低盐度的水上含水为基础油产生阳性作用,但它将低盐度水的pH窗口转变为较低的中性油的pH值较低的pH值。此外,温度放大了低盐度水的能力,以提高表面电位。我们的研究结果支持在相关水库温度下进行实验工作,以评估低盐度的性能。

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