Transport Properties of Refrigerant Mixtures: Thermal Conductivity

In the present work, the integral equations method is used to calculate transport properties of polar fluids. For this goal, we use the Stockmayer potential and examine theoretically the thermal conductivity of several refrigerant mixtures such as R125+R134a, R125+R32, R125+R152a, R134a+R32, R152a+R...

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Main Authors: Reza Khordad, Bahare Mirhosseini
Format: Article
Language:English
Published: Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR 2015-03-01
Series:Iranian Journal of Chemistry & Chemical Engineering
Subjects:
Online Access:http://www.ijcce.ac.ir/article_12685_313947fea87a641ae77930314913c50b.pdf
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author Reza Khordad
Bahare Mirhosseini
author_facet Reza Khordad
Bahare Mirhosseini
author_sort Reza Khordad
collection DOAJ
description In the present work, the integral equations method is used to calculate transport properties of polar fluids. For this goal, we use the Stockmayer potential and examine theoretically the thermal conductivity of several refrigerant mixtures such as R125+R134a, R125+R32, R125+R152a, R134a+R32, R152a+R32, R134a+R143a, and R125+R143a. We solve numerically the Ornstein-Zernike (OZ) equation using the Hypernetted Chain (HNC) approximation  for binary fluid mixtures and obtain the pair correlation functions. Finally, the temperature dependence of thermal conductivity is studied using Vesovic-Wakeham method and compared with available results.
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spelling doaj.art-0d630324b0534e0d9ee92fecd95a05c42022-12-22T03:08:03ZengIranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECRIranian Journal of Chemistry & Chemical Engineering1021-99861021-99862015-03-01341758512685Transport Properties of Refrigerant Mixtures: Thermal ConductivityReza Khordad0Bahare Mirhosseini1Department of Physics, College of Sciences, Yasouj University, P.O. Box 75914-353 Yasouj, I.R. IRANDepartment of Physics, College of Sciences, Yasouj University, P.O. Box 75914-353 Yasouj, I.R. IRANIn the present work, the integral equations method is used to calculate transport properties of polar fluids. For this goal, we use the Stockmayer potential and examine theoretically the thermal conductivity of several refrigerant mixtures such as R125+R134a, R125+R32, R125+R152a, R134a+R32, R152a+R32, R134a+R143a, and R125+R143a. We solve numerically the Ornstein-Zernike (OZ) equation using the Hypernetted Chain (HNC) approximation  for binary fluid mixtures and obtain the pair correlation functions. Finally, the temperature dependence of thermal conductivity is studied using Vesovic-Wakeham method and compared with available results.http://www.ijcce.ac.ir/article_12685_313947fea87a641ae77930314913c50b.pdftransport propertythermal conductivityrefrigerant mixturesbinary mixtures
spellingShingle Reza Khordad
Bahare Mirhosseini
Transport Properties of Refrigerant Mixtures: Thermal Conductivity
Iranian Journal of Chemistry & Chemical Engineering
transport property
thermal conductivity
refrigerant mixtures
binary mixtures
title Transport Properties of Refrigerant Mixtures: Thermal Conductivity
title_full Transport Properties of Refrigerant Mixtures: Thermal Conductivity
title_fullStr Transport Properties of Refrigerant Mixtures: Thermal Conductivity
title_full_unstemmed Transport Properties of Refrigerant Mixtures: Thermal Conductivity
title_short Transport Properties of Refrigerant Mixtures: Thermal Conductivity
title_sort transport properties of refrigerant mixtures thermal conductivity
topic transport property
thermal conductivity
refrigerant mixtures
binary mixtures
url http://www.ijcce.ac.ir/article_12685_313947fea87a641ae77930314913c50b.pdf
work_keys_str_mv AT rezakhordad transportpropertiesofrefrigerantmixturesthermalconductivity
AT baharemirhosseini transportpropertiesofrefrigerantmixturesthermalconductivity