Entropy variation in isothermal fluid flow considering real gas effects

The present paper concerns on the estimative of the pressure loss and entropy variation in an isothermal fluid flow, considering real gas effects. The 1D formulation is based on the isothermal compressibility module and on the thermal expansion coefficient in order to be applicable for both gas and...

Full description

Bibliographic Details
Main Authors: Maurício Guimarães da Silva, Paulo Afonso Pinto de Oliveira
Format: Article
Language:English
Published: Departamento de Ciência e Tecnologia Aeroespacial 2011-01-01
Series:Journal of Aerospace Technology and Management
Subjects:
Online Access:http://www.jatm.com.br/papers/vol3_n1/JATMv3n1_p29-40_Entropy_variation_in_isothermal_fluid_flow_considering_real_gas_effects.pdf
id doaj-9d37579e63cc4a0ba69d8e4968410cb3
record_format Article
spelling doaj-9d37579e63cc4a0ba69d8e4968410cb32020-11-24T21:25:47ZengDepartamento de Ciência e Tecnologia AeroespacialJournal of Aerospace Technology and Management1984-96482175-91462011-01-01312940Entropy variation in isothermal fluid flow considering real gas effects Maurício Guimarães da SilvaPaulo Afonso Pinto de OliveiraThe present paper concerns on the estimative of the pressure loss and entropy variation in an isothermal fluid flow, considering real gas effects. The 1D formulation is based on the isothermal compressibility module and on the thermal expansion coefficient in order to be applicable for both gas and liquid as pure substances. It is emphasized on the simple methodology description, which establishes a relationship between the formulation adopted for ideal gas and another considering real gas effects. A computational procedure has been developed, which can be used to determine the flow properties in duct with a variable area, where real gas behavior is significant. In order to obtain quantitative results, three virial coefficients for Helium equation of state are employed to determine the percentage difference in pressure and entropy obtained from different formulations. Results are presented graphically in the form of real gas correction factors, which can be applied to perfect gas calculations. http://www.jatm.com.br/papers/vol3_n1/JATMv3n1_p29-40_Entropy_variation_in_isothermal_fluid_flow_considering_real_gas_effects.pdfIsothermal flowReal gasEntropyPetroleum engineering
collection DOAJ
language English
format Article
sources DOAJ
author Maurício Guimarães da Silva
Paulo Afonso Pinto de Oliveira
spellingShingle Maurício Guimarães da Silva
Paulo Afonso Pinto de Oliveira
Entropy variation in isothermal fluid flow considering real gas effects
Journal of Aerospace Technology and Management
Isothermal flow
Real gas
Entropy
Petroleum engineering
author_facet Maurício Guimarães da Silva
Paulo Afonso Pinto de Oliveira
author_sort Maurício Guimarães da Silva
title Entropy variation in isothermal fluid flow considering real gas effects
title_short Entropy variation in isothermal fluid flow considering real gas effects
title_full Entropy variation in isothermal fluid flow considering real gas effects
title_fullStr Entropy variation in isothermal fluid flow considering real gas effects
title_full_unstemmed Entropy variation in isothermal fluid flow considering real gas effects
title_sort entropy variation in isothermal fluid flow considering real gas effects
publisher Departamento de Ciência e Tecnologia Aeroespacial
series Journal of Aerospace Technology and Management
issn 1984-9648
2175-9146
publishDate 2011-01-01
description The present paper concerns on the estimative of the pressure loss and entropy variation in an isothermal fluid flow, considering real gas effects. The 1D formulation is based on the isothermal compressibility module and on the thermal expansion coefficient in order to be applicable for both gas and liquid as pure substances. It is emphasized on the simple methodology description, which establishes a relationship between the formulation adopted for ideal gas and another considering real gas effects. A computational procedure has been developed, which can be used to determine the flow properties in duct with a variable area, where real gas behavior is significant. In order to obtain quantitative results, three virial coefficients for Helium equation of state are employed to determine the percentage difference in pressure and entropy obtained from different formulations. Results are presented graphically in the form of real gas correction factors, which can be applied to perfect gas calculations.
topic Isothermal flow
Real gas
Entropy
Petroleum engineering
url http://www.jatm.com.br/papers/vol3_n1/JATMv3n1_p29-40_Entropy_variation_in_isothermal_fluid_flow_considering_real_gas_effects.pdf
work_keys_str_mv AT mauricioguimaraesdasilva entropyvariationinisothermalfluidflowconsideringrealgaseffects
AT pauloafonsopintodeoliveira entropyvariationinisothermalfluidflowconsideringrealgaseffects
_version_ 1725982849675296768