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Effect of temperature on relative permeability - Role of viscosity ratio

机译:温度对相对渗透性的影响 - 粘度比的作用

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摘要

Although there are many studies regarding the effect of temperature on relative permeability, there is no consensus on this issue. Here we examine the role of oil/water viscosity ratio in making the measured oil/water relative permeability dependent on temperature. Two-phase oil/water relative permeability was carefully measured over a wide range of temperature between 23 degrees C and 210 degrees C using a poly-alpha-olefin (PAO) oil and deionized water in a clean unconsolidated sand-pack at confining pressure of 800 psi. A sophisticated experimental setup that is capable of measuring the pressure drop and monitoring the temperature in four different length segments of the sand-pack was used. Both the Johnson, Bossler and Neumann (JBN) method and the history match approach were employed to obtain the relative permeability from the results of isothermal oil displacement tests. Furthermore, high-temperature and high-pressure interfacial tension (IFT) and contact angle measurements were also carried out.The results show that the two-phase oil/water relative permeability, in this ultra-clean system, is practically insensitive to the temperature, even though the oil/water viscosity ratio changes by two orders of magnitude. The slight variation in oil endpoint relative permeability and irreducible water saturation, especially at ambient condition, was attributed to the uncertainty in the oil viscosity measurement and reproducibility of the sand packing procedure. The IFT of this system declined from 41.1 mN/m at 23.5 degrees C to 20.9 mN/m at 185.2 degrees C and contact angle decreased from 80.7 at 23.5 degrees C to 56.9 degrees at 150 degrees C. Changes of this level do not significantly affect the oil displacement behavior.
机译:虽然有很多关于温度对相对渗透性的影响的研究,但对这个问题没有共识。在这里,我们研究了油/水粘度比在使测量的油/水相对渗透率依赖于温度的作用。在限制压力下,使用聚-α-烯烃(PAO)油和去离子水在23℃和210℃之间小心地测量两相油/水相对渗透率。 800 psi。使用能够测量压降和监测砂包的四个不同长度段温度的复杂的实验装置。使用Johnson,Bossler和Neumann(JBN)方法和历史匹配方法,以获得来自等温油位移试验结果的相对渗透性。此外,还进行了高温和高压界面张力(IFT)和接触角测量。结果表明,在这种超清洁系统中,两相油/水相对渗透性几乎对温度不敏感,即使油/水粘度比变化了两个数量级。油终点相对渗透性和不可缩短的水饱和度的轻微变化,特别是在环境条件下,归因于砂包装过程的油粘度测量和再现性的不确定性。该系统的IFT在185.2℃下以23.5℃的41.1mN / m达到20.9mn / m,接触角在80.7℃下降到150℃至56.9度。该水平的变化不会显着影响油位移行为。

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