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Phase behavior and compressibility factor of two China gas condensate samples at pressures up to 95MPa

机译:两个中国天然气凝析油样品在高达95MPa的压力下的相行为和可压缩系数

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摘要

Constant composition expansion measurements were performed using a high pressure fluid PVT system for two gas condensate samples collected from two reservoir fields in China to determine the dew point pressures and compressibility factors at different temperatures, where the experimental pressures were up to 95. MPa. For the samples studied, the experimental results showed that the dew point pressures decrease with the increase of temperature and the gas compressibility factors increase with the increase of pressure in single phase zone at four temperatures. Thermodynamic models that combining equations of state with different kinds of plus-fraction splitting and critical properties of pseudo-components characterization methods were compared and optimized to describe the phase behavior and volumetric properties of gas condensate samples under high-pressure and high-temperature conditions. The preferred model has a better description for dew point pressures and gas compressibility factors with the total average absolute deviation for two samples of 0.64% and 1.56%, respectively.
机译:使用高压流体PVT系统对从中国两个储层采集的两个凝析气样品进行恒定组成膨胀测量,以确定在不同温度下的露点压力和可压缩性因子,其中实验压力高达95. MPa。对于所研究的样品,实验结果表明,在四个温度下,单相区的露点压力随温度的升高而降低,而气体压缩系数随压力的升高而升高。比较并优化了热力学模型,该模型将状态方程与不同种类的加分数分解和伪组分表征方法的临界特性相结合,以描述高压和高温条件下凝析气样品的相行为和体积特性。首选模型可以更好地描述露点压力和气体压缩系数,两个样品的总平均绝对偏差分别为0.64%和1.56%。

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