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Phase behavior of heavy oil–solvent mixture systems under reservoir conditions

机译:储层条件下重油溶剂混合体系的相行为

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摘要

A novel experimental procedure was proposed to investigate the phase behavior of a solvent mixture (SM) (64?mol% CH_(4), 8?mol% CO_(2), and 28?mol% C_(3)H_(8)) with heavy oil. Then, a theoretical methodology was employed to estimate the phase behavior of the heavy oil–solvent mixture (HO–SM) systems with various mole fractions of SM. The experimental results show that as the mole fraction of SM increases, the saturation pressures and swelling factors of the HO–SM systems considerably increase, and the viscosities and densities of the HO–SM systems decrease. The heavy oil is upgraded in situ via asphaltene precipitation and SM dissolution. Therefore, the solvent-enriched oil phase at the top layer of reservoirs can easily be produced from the reservoir. The aforementioned results indicate that the SM has promising application potential for enhanced heavy oil recovery via solvent-based processes. The theoretical methodology can accurately predict the saturation pressures, swelling factors, and densities of HO–SM systems with various mole fractions of SM, with average error percentages of 1.77% for saturation pressures, 0.07% for swelling factors, and 0.07% for densities.
机译:提出了一种新的实验程序,研究溶剂混合物(SM)的相行为(64摩尔%CH_(4),8摩尔%CO_(2),28〜摩尔%C_(3)H_(8) )用重油。然后,采用理论方法来估计具有SM的各种摩尔分数的重油溶剂混合物(HO-SM)体系的相行为。实验结果表明,随着SM的摩尔分数增加,HO-SM系统的饱和压力和溶胀因子显着增加,并且HO-SM系统的粘度和密度降低。通过沥青质沉淀和SM溶解原位升级重油。因此,储存器顶层的富含溶剂的油相可以容易地从储存器中生产。上述结果表明,SM通过基于溶剂的方法提高了重油回收的有希望的应用潜力。理论方法可以准确地预测HO-SM系统的饱和压力,溶胀因子和密度,具有各种摩尔分数的SM,平均误差百分比为1.77%,饱和压力为0.07%,密度为0.07%,为0.07%。

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