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The Vapour-Vapour Interface Observation and Appraisement of a Gas-Condensate/Supercritical CO 2 System

机译:凝析气/超临界CO 2系统的汽-气界面观察与评价

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Injecting supercritical CO2 into gas reservoir is a novel trial to improve condensate gas recovery and decrease the hydrocarbon liquid dropout. A good understanding of the effect of supercritical CO2 on the phase behavior properties of these hydrocarbons is essential for accurately forecasting the displacing performance and storing process of the reservoirs with numerical simulators. This paper presents novel phase behavior experimental procedures and phase equilibrium evaluation methodology for gas-condensate phase system mixed with supercritical CO2 over a wide range of temperatures and pressures. A unique phase behavior phenomena was also reported. The mass transfer between two vapour phases was also measured. In order to interpret and identify the interface property between condensate gas and supercritical CO2, a multiphase thermodynamic VLV equilibrium model was established. Finally, taken YKL condensate gas in Northwest China as an example, the region where the conditions in terms of pressure, temperature and CO2 concentration can yield VLV equilibrium was found. The calculation results of multiphase thermodynamic model for condensate-CO2 system in this paper are close to the experimental data and can truthfully reflect the phase behavior of interface between CO2 and condensate gas. The research results indicate that it is the existence of the interface between CO2 and condensate gas that makes CO2 possible be an attractive option to successfully displace condensate gas and decrease CO2 emissions.
机译:将超临界CO2注入气藏是提高凝析气回收率并减少烃类液体漏失的新尝试。充分了解超临界CO2对这些烃的相态特性的影响,对于使用数值模拟器准确预测储层的驱替性能和存储过程至关重要。本文介绍了在宽温度和压力范围内混合超临界CO2的凝析气相系统的新相行为实验程序和相平衡评估方法。还报道了独特的相行为现象。还测量了两个气相之间的传质。为了解释和识别凝析气与超临界二氧化碳之间的界面性质,建立了多相热力学VLV平衡模型。最后,以中国西北地区的YKL凝析气为例,找到了压力,温度和CO2浓度条件可以达到VLV平衡的区域。本文针对凝析气-CO2系统的多相热力学模型的计算结果与实验数据相近,可以真实地反映出凝析气-CO2界面的相态。研究结果表明,正是由于CO2和凝析气之间存在界面,才使得CO2成为成功替代凝结气并减少CO2排放的诱人选择。

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