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A comparison between Peng-Robinson and Soave-Redlich-Kwong cubic equations of state from modification perspective

机译:从修改视角下彭 - 罗宾逊与Soave-ydlich-kwong立方方程的比较

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Cubic Equations of State (CEOSs) are the most important tools in PVT calculations due to their simplicity in use and their extrapolative abilities to condition well outside their correlation ranges. Peng-Robinson (PR) and Soave-Redlich-Kwong (SRK) are most successful in the CEOSs which have repeatedly been modified in order to improve their accuracy in wider ranges of temperature and pressure. Unfortunately, most of modifications carried out on these EOSs have no adequate justification for selecting either of these as the basic starting point for the modifications. In this paper, PR and SRK EOSs were critically compared with each other using some new features of their subcritical and supercritical results. For this purpose, the CEOSs were assessed using comprehensive tests of the PVT calculations in the vapor liquid equilibrium (for pure hydrocarbons over a wide range of acentric factor values: Methane, Ethane Propane, Butane, Heptane and Nonane) and Joule-Thomson Inversion Curves' (JTICs) predictions (for compounds which have reliable JTICs data: Methane, Ethane, Ethylene, Nitrogen, Oxygen, Argon and Carbon dioxide) in subcritical and supercritical regions, respectively. The results indicated that the PR EOS by using any of realistic alpha-function forms will never be able to accurately predict the JTICs in full span. On the other hand, the subcritical results revealed that the great success of the PR CEOS in predicting liquid phase density is only due to its function in shifting the results of the SRK CEOS to the lower values with the same curve trend. In addition, the Patel and Teja's (PT) EOS, has been reevaluated and the results showed that most of the defects of PR EOS still remain. This article suggests that in order to develop CEOSs, the original SRK EOS is a better candidate than original and alternative forms of PR EOS. (C) 2017 Elsevier Ltd. All rights reserved.
机译:状态(CEOS)的立方方程是PVT计算中最重要的工具,因为它们的简单性和它们的外推能力在其相关范围之外的外延能力。彭罗宾逊(PR)和Soave-Redlich-Kwong(SRK)在电缆中最为成功,在电缆中反复进行修改,以提高其在更广泛的温度和压力范围内的准确性。不幸的是,这些eoss的大部分修改都没有足够的理由来选择其中任何一个作为修改的基本起点。在本文中,PR和SRK EOSS使用其子临界和超临界结果的一些新功能相互比较。为此目的,使用蒸汽液体平衡中PVT计算的PVT计算的综合测试(用于纯烃类别的纯烃类别:甲烷,乙烷丙烷,丁烷,庚烷和壬烷)和焦耳 - 汤姆森反演曲线的综合测试评估了CEOS '(JTICS)预测(用于具有可靠的JTICS数据:甲烷,乙烷,乙烯,氮,氮,氧,氩气,氧气,氧化碳)的预测,分别在亚临界和超临界区域中的甲烷,氩气和二氧化碳)。结果表明,PR EOS通过使用任何现实的字母函数形式,永远无法准确地预测全跨度的JTIC。另一方面,亚临界结果表明,预测液相密度的PR CEO的巨大成功仅是由于其在通过相同曲线趋势的较低值转换SRK CEO的结果。此外,Patel和Teja(PT)EOS已被重新评估,结果表明,大多数PR EOS的缺陷仍然存在。本文表明,为了开发CEOS,原来的SRK EOS是比Pr EOS的原始和替代形式更好的候选者。 (c)2017 Elsevier Ltd.保留所有权利。

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