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首页> 外文期刊>Journal of Petroleum & Environmental Biotechnology >Modeling of Pressure Dependence of Interfacial Tension Behaviors of aComplex Supercritical CO2 + Live Crude Oil System Using a Basic ParachorExpression
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Modeling of Pressure Dependence of Interfacial Tension Behaviors of aComplex Supercritical CO2 + Live Crude Oil System Using a Basic ParachorExpression

机译:使用基本降落子表达式模拟复杂的超临界CO2 +原油系统界面张力行为的压力依赖性模型

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Parachor based basic expressions are often used to model the experimentally observed pressure dependence of interfacial tension (IFT) behaviors of complex supercritical CO2 + crude oil (dead or live) mixtures at elevated temperatures. However, such modeling requires compositions and densities of the equilibrium liquid and vapor phases and molecular weights of various components present in the system. In the absence of measured data, often phase behavior packages are used for obtaining these input data for performing calculations. Very few researchers have used experimentally measured input data for performing parachor based modeling of the experimental IFT behaviors of complex supercritical CO2 + live crude oil systems. This study presents the results of a basic parachor model based modeling of pressure dependence of IFT behaviors of a complex supercritical CO2 + live crude oil system for which experimentally measured input data is available in public domain. Though the calculated IFT behaviors showed significant deviation from the experimentally measured behaviors at a given pressure, calculated IFT versus pressure trends appeared to follow the experimental observed trends closely. Also, despite a large variation in the compositions of feed supercritical CO2 + live crude oil mixtures, both trends (calculated and experimental) converged rapidly to attain a near zero IFT condition at more or less same pressure.
机译:基于Parachor的基本表达式通常用于模拟在高温下复杂超临界CO2 +原油(死或活)混合物的界面张力(IFT)行为的实验观察压力依赖性。然而,这种建模需要平衡液相和气相的组成和密度以及系统中存在的各种组分的分子量。在缺乏测量数据的情况下,通常会使用相位行为包来获取这些输入数据以进行计算。很少有研究人员使用实验测量的输入数据对复杂的超临界CO2 +原油系统的实验IFT行为进行基于降伞的建模。这项研究提出了基于基本降落伞模型的模型的结果,该模型基于复杂的超临界CO2 +活性原油系统的IFT行为的压力依赖性的压力依赖性,该模型的实验测量输入数据可在公共领域获得。尽管在给定压力下,所计算的IFT行为与实验测量的行为存在显着偏差,但所计算的IFT对压力的趋势似乎紧随实验观察到的趋势。同样,尽管进料超临界CO2 +活性原油混合物的成分差异很大,但两种趋势(计算得出的和实验得出的)都迅速收敛,在或多或少相同的压力下达到了接近零的IFT条件。

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