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A Laboratory Investigation of the Effects of Saturated Steam Properties on the Interfacial Tension of Heavy-Oil/Steam System Using Pendant Drop Method

机译:垂降法研究饱和蒸汽性质对重油/蒸汽系统界面张力影响的室内研究

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摘要

For about a century, steam injection has been widely used as the most popular thermal recovery method for heavy-oil in sandstone reservoirs. In order to achieve higher recovery efficiency, which corresponds to the lowest possible value of residual oil saturation and economic success of steam injection projects, an accurate laboratory measurement of the interfacial tension between steam and heavy-oil is essential. However, laboratory investigation and visualization of the effects of steam injection on the interfacial tension between heavy-oil and steam as a function of saturation temperature and pressure is not well documented in the literature. The objective of this study is to investigate the influences of the two main factors which affect the interfacial tension of heavy-oil and steam namely saturation pressure and temperature. An optical cell, which was fitted with a goniometer system and a procedure to generate steam for the measurement of interfacial tension have been used. The difference between the density of heavy-oil and steam, which was used for pendant drop measurements, was calculated at specific temperature and pressure conditions using Kate's method. Meanwhile, the density of steam was obtained from an international steam table. The interfacial tension of heavy-oil/steam was measured in small intervals, ranging from 115 to 181 Celsius and 25 to 150 pounds per square inch. The results show that the interfacial tension decreases when the saturation temperature and pressure increases. This finding might be useful as an important reference for understanding and visualization the mechanism of interfacial tension during steam injection.
机译:大约一个世纪以来,蒸汽注入已被广泛用作砂岩油藏中稠油最流行的热采方法。为了实现更高的采收率(对应于最低的剩余油饱和度值和蒸汽注入项目的经济成功率),准确地实验室测量蒸汽与重油之间的界面张力至关重要。但是,实验室研究和蒸汽注入对重油和蒸汽之间的界面张力的影响(取决于饱和温度和压力)的可视化效果在文献中并未得到充分记录。这项研究的目的是研究影响重油和蒸汽界面张力的两个主要因素,即饱和压力和温度的影响。使用了装有测角仪系统的光学室和产生蒸汽以测量界面张力的程序。使用凯特(Kate)方法在特定温度和压力条件下计算了用于悬垂测量的重油和蒸汽密度之间的差异。同时,蒸汽密度是从国际蒸汽表获得的。重油/蒸汽的界面张力的测量间隔很小,范围为115至181摄氏度和25至150磅/平方英寸。结果表明,当饱和温度和压力升高时,界面张力降低。该发现可能作为理解和可视化蒸汽注入过程中界面张力机理的重要参考。

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