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Experimental Determination of Interfacial Tension and Miscibility of the CO2-Crude Oil System; Temperature, Pressure, and Composition Effects

机译:二氧化碳原油系统界面张力和混溶性的实验测定;温度,压力和成分影响

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摘要

Interfacial tension (IPT) as one of the main properties for efficient CO2 flooding planning in oil reservoirs depends strongly on pressure, temperature, and composition of the reservoir fluids. Therefore, it is important to measure this property at real reservoir conditions for successful field development plan. In this study, an axisymmetric drop shape analysis (ADSA) has been utilized to measure the equilibrium IFTs between crude oil and CO2 at different temperatures and pressures. Moreover, minimum miscibility pressures (MMP) and first-contact miscibility pressures (P_(max)) of crude ofl/CO2 systems at different temperatures are determined by applying the vanishing interfacial tension (VIT) technique. Besides, the effects of paraffins content and resin to asphaltene ratio of the crude oil on the IFT behavior are investigated. The results show that while the IFT has a decreasing trend with temperature at low pressures region, it has an increasing trend with temperature at high pressures. Also, MMP and P_(max) were found to increase linearly with temperature. The results indicate that paraffin has a critical effect on the crude oil/CO2 IFT behavior. It was also found that the lower the ratio of resin-to-asphaltene is, the more is the possibility of asphaltene precipitation as determined by examining the IFT behavior of the solution. Moreover, the results verified that the higher is the molecular weight of heavier components of the crude oil, the higher are the MMP values obtained.
机译:界面张力(IPT)作为有效的CO2驱油计划的主要属性之一,在很大程度上取决于压力,温度和油藏流体的组成。因此,对于成功的油田开发计划而言,在实际储层条件下测量该属性非常重要。在这项研究中,轴对称液滴形状分析(ADSA)已用于测量在不同温度和压力下原油与CO2之间的平衡IFT。此外,通过应用消失界面张力(VIT)技术确定了不同温度下的原油/ CO2系统的最小混溶压力(MMP)和第一接触混溶压力(P_(max))。此外,还研究了石蜡含量和原油中树脂与沥青质的比例对IFT行为的影响。结果表明,虽然IFT在低压区域随温度降低而减小,但在高压区域随温度升高而增大。而且,发现MMP和P_(max)随温度线性增加。结果表明,石蜡对原油/ CO2 IFT行为具有关键影响。还发现通过检查溶液的IFT行为确定的树脂与沥青质的比率越低,沥青质沉淀的可能性就越大。此外,结果证实,原油中较重组分的分子量越高,得到的MMP值越高。

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