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Magnetic resonance imaging study on near miscible supercritical CO2 flooding in porous media

机译:多孔介质中近混溶超临界CO 2驱的磁共振成像研究

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CO2 flooding is one of the most popular secondary or tertiary recoveries for oil production. It is also significant for studying the mechanisms of the two-phase and multiphase flow in porous media. In this study, an experimental study was carried out by using magnetic resonance imaging technique to examine the detailed effects of pressure and rates on CO2/decane flow in a bead-pack porous media. The displacing processes were conducted under various pressures in a region near the minimum miscibility pressure (the system tuned from immiscible to miscible as pressure is increasing in this region) and the temperature of 37.8 °C at several CO2 injection volumetric rates of 0.05, 0.10, and 0.15 ml/min (or linear rates of 3.77, 7.54, and 11.3 ft/day). The evolution of the distribution of decane and the characteristics of the two phase flow were investigated and analyzed by considering the pressure and rate. The area and velocity of the transition zone between the two phases were calculated and analyzed to quantify mixing. The area of transition zone decreased with pressure at near miscible region and a certain injection rate and the velocity of the transition zone was always less than the "volumetric velocity" due to mutual solution and diffusion of the two phases. Therefore, these experimental results give the fundamental understanding of tertiary recovery processes at near miscible condition.
机译:二氧化碳驱是石油生产中最流行的二次或三次采收之一。研究多孔介质中两相和多相流动的机理也具有重要意义。在这项研究中,通过使用磁共振成像技术进行了一项实验研究,以检查压力和速率对珠状填充多孔介质中CO2 /癸烷流量的详细影响。在接近最小混溶压力的区域(随着该区域中压力的增加,系统从不混溶调整为可混溶)的温度和37.8°C的温度下,不同的CO2注入体积率分别为0.05、0.10,和0.15毫升/分钟(或3.77、7.54和11.3英尺/天的线性速率)。考虑压力和速率,研究和分析了癸烷的分布演变和两相流的特性。计算并分析了两相之间过渡区的面积和速度,以量化混合。过渡区的面积随着接近混溶区域的压力和一定的注入速率而减小,并且由于两相的相互溶解和扩散,过渡区的速度始终小于“体积速度”。因此,这些实验结果使人们对混溶条件下的三次采收过程有了基本的了解。

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