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High Pressure Behavior of Hydrocarbons. Joule-Thomson Expansion of Gas Condensates

机译:碳氢化合物的高压行为。焦耳气体的焦耳-汤姆森膨胀

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This paper presents calculations of Joule-Thomson inversion effects in high-pressure-high-temperature gas condensates. Isenthalpic expansions were modeled for several gas condensate mixtures reported in literature using the Soave-Redlich-Kwong and the Peng-Robinson equations of state. The calculations confirmed qualitatively the heating of gas condensates at expansion. Although reservoir temperatures are in the region where cooling occurs, i. e. , inside the inversion curve, it was shown that reservoir pressures lie outside this region, and that the temperature will increase until the inversion curve is reached. The calculated temperature increases are not very large. Although exact values depend on fluid composition, reservoir conditions, and pressure drop, typical calculated temperature increases are in the range of 10-30°C for reservoir pressures of 1000 bar. A sensitivity study showed that both reservoir pressure and fluid composition greatly affect the temperature increase. With increasing pressures and increasing amounts of heavy constituents present in gas condensate mixtures, the maximum possible temperature effect will also increase. Unfortunately, due to lack of experimental information, the reliability of the calculated results could not be verified.
机译:本文介绍了在高温高压气体凝析物中焦耳-汤姆森反演效应的计算。使用Soave-Redlich-Kwong和Peng-Robinson状态方程,对文献中报道的几种凝析气混合物进行等焓膨胀建模。该计算定性地证实了膨胀时气体冷凝物的加热。尽管储层温度在发生冷却的区域,但是e。在反演曲线内,表明储层压力位于该区域之外,温度将升高直到达到反演曲线。计算出的温度升高不是很大。尽管确切值取决于流体成分,储层条件和压降,但对于1000 bar的储层压力,典型的计算出的温度升高范围为10-30°C。敏感性研究表明,储层压力和流体成分都对温度升高有很大影响。随着气体冷凝液混合物中压力的增加和重组分含量的增加,最大可能的温度影响也将增加。不幸的是,由于缺乏实验信息,无法验证计算结果的可靠性。

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