引用本文:
Behzad Haghighi, Mohammad Reza Hussaindokht, Mohammad Reza Bozorgmehr, Naser Seyed Matin. Joule-Thomson inversion curve prediction by using equation of state[J]. Chinese Chemical Letters,
2007, 18(9): 1154-1158.
doi:
10.1016/j.cclet.2007.07.002
Citation: Behzad Haghighi, Mohammad Reza Hussaindokht, Mohammad Reza Bozorgmehr, Naser Seyed Matin. Joule-Thomson inversion curve prediction by using equation of state[J]. Chinese Chemical Letters, 2007, 18(9): 1154-1158. doi: 10.1016/j.cclet.2007.07.002
Citation: Behzad Haghighi, Mohammad Reza Hussaindokht, Mohammad Reza Bozorgmehr, Naser Seyed Matin. Joule-Thomson inversion curve prediction by using equation of state[J]. Chinese Chemical Letters, 2007, 18(9): 1154-1158. doi: 10.1016/j.cclet.2007.07.002
Joule-Thomson inversion curve prediction by using equation of state
摘要:
In this paper five equations of state are tested for checking their ability to predict the Joule-Thomson inversion curve. These five equations of state are:Mohsennia-Modarres-Mansoori (MMM), Ji-Lemp (JL), modified Soave-Redlich-Kwang (SRK) equation of state by Graboski (MSRK1), modified SRK equation of state by Peneloux and Rauzy (MSRK2), and modified Peng-Robinson (PR) equation of state by Rauzy (PRmr). The investigated equations of state give good prediction of the low-temperature branch of the inversion curve, except for MMM equation of state. The high-temperature branch and the peak of the inversion curve have been observed, in general, to be sensitive to the applied equation of state. The values of the maximum inversion temperature and maximum inversion pressure are calculated for each component used in this work.
English
Joule-Thomson inversion curve prediction by using equation of state
Abstract:
In this paper five equations of state are tested for checking their ability to predict the Joule-Thomson inversion curve. These five equations of state are:Mohsennia-Modarres-Mansoori (MMM), Ji-Lemp (JL), modified Soave-Redlich-Kwang (SRK) equation of state by Graboski (MSRK1), modified SRK equation of state by Peneloux and Rauzy (MSRK2), and modified Peng-Robinson (PR) equation of state by Rauzy (PRmr). The investigated equations of state give good prediction of the low-temperature branch of the inversion curve, except for MMM equation of state. The high-temperature branch and the peak of the inversion curve have been observed, in general, to be sensitive to the applied equation of state. The values of the maximum inversion temperature and maximum inversion pressure are calculated for each component used in this work.
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Key words:
- Equation of state
- / Joule-Thomson coefficient
- / Inversion curve
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