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首页> 外文期刊>Fluid Phase Equilibria >THERMODYNAMIC MODELING FOR PETROLEUM FLUID III - RESERVOIR FLUID SATURATION PRESSURES - A COMPLETE PVT PROPERTY ESTIMATION, APPLICATION TO SWELLING TEST
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THERMODYNAMIC MODELING FOR PETROLEUM FLUID III - RESERVOIR FLUID SATURATION PRESSURES - A COMPLETE PVT PROPERTY ESTIMATION, APPLICATION TO SWELLING TEST

机译:石油流体的热力学模型III-储层流体饱和压力-完整的PVT性能估算,在膨胀试验中的应用

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This paper is the third one in a series in which a new strategy for modeling heavy petroleum cuts is proposed, with which the PVT properties of gas condensate and crude oils can be completely predicted using a classical one-fluid model with a cubic equation of state. In the second paper in this series, a new method of characterizing petroleum cuts was described. It was concluded that it was necessary to have at least one experimental saturation pressure in order to be able to calculate the PVT properties of a reservoir fluid with a good degree of accuracy. The third paper focuses on the development of a method which can be used to estimate the upper saturation pressure of reservoir fluids at about 100 degrees C, The parameters used in the model were based on correlations involving more than 70 experimental saturation pressures. The method described in this paper, along with the characterization procedure described in the previous paper, makes it possible to completely calculate the PVT properties of a given reservoir fluid. Comparisons are made with other calculation methods described in the literature, and results obtained during gas injection experiments (swelling tests) are discussed. (C) 1997 Elsevier Science B.V. [References: 12]
机译:本文是该系列文章中的第三篇,其中提出了一种新的重油馏分建模策略,利用该策略,可以使用带有立方状态方程的经典单流体模型完全预测天然气凝析油和原油的PVT特性。 。在本系列的第二篇论文中,描述了表征石油馏分的新方法。结论是,必须具有至少一个实验饱和压力,以便能够以良好的精确度计算储层流体的PVT特性。第三篇论文的重点是可以用来估计大约100摄氏度的储层流体的最高饱和压力的方法的开发。模型中使用的参数基于涉及70多个实验饱和压力的相关性。本文所述的方法以及先前论文所述的表征程序,使得可以完全计算给定储层流体的PVT特性。与文献中描述的其他计算方法进行了比较,并讨论了在注气实验(膨胀试验)中获得的结果。 (C)1997 Elsevier Science B.V. [参考:12]

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