This paper presents the estimation of exit temperatures in the isentropic compression of real gases based on the Peng-Robinson equation of state and entropy balance method. The methods were applied to Ar, N2, CH4, CO2, C2H4 and C2H6. Data obtained revealed that isentropic exponent method provides useful results for monatomic and diatomic gases while it is less useful when applied to polyatomic gases. Furthermore, the results obtained in this work show that the use of relative gravity to correlate compressor calculations for gaseous mixtures can lead to serious error in certain cases.Keywords: Peng-Robinson equation of state, isentropic compression, entropy balance, pressure-volume exponent metho
In this study the pressure effect on the inversion temperature of gases was determined. The gases se...
Computer program obtains the real-gas isentropic flow functions and thermodynamic properties of gase...
The efficiency of positive-displacement components is of prime importance in determining the overall...
The contribution deals with calculation of isentropic efficiency and also with calculation of isentr...
A generalized isentropic gas model is derived following earlier work by Kouremenos et al. in the 198...
ABSTRACT In the design and testing of gas compressors, the correct determination of the thermodynami...
This paper discusses the determination and application of the isentropic exponent to the various the...
International audienceWe present several equilibrium methods that allow to compute isentropic proces...
A model for thermal expansivity (β) of gases at high pressure was developed based on the Peng–Robins...
No Abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/37284/1/690010203_ftp.pd
AbstractLee-Kesler (LK) Equation of State (EoS) is the most accurate enthalpy model for gases. The p...
Isentropic processes in thermodynamics are fundamental to our understanding of numerous physical phe...
project TK03030121 Conceptual Design of an Innovative Safety System for Gas-cooled Nuclear Reactor
Due to several incentives for reducing energy consumption worldwide, there is an increasingly demand...
Cubic equations of state (EOS), such as the Peng-Robinson EOS, are routinely used by the oil and gas...
In this study the pressure effect on the inversion temperature of gases was determined. The gases se...
Computer program obtains the real-gas isentropic flow functions and thermodynamic properties of gase...
The efficiency of positive-displacement components is of prime importance in determining the overall...
The contribution deals with calculation of isentropic efficiency and also with calculation of isentr...
A generalized isentropic gas model is derived following earlier work by Kouremenos et al. in the 198...
ABSTRACT In the design and testing of gas compressors, the correct determination of the thermodynami...
This paper discusses the determination and application of the isentropic exponent to the various the...
International audienceWe present several equilibrium methods that allow to compute isentropic proces...
A model for thermal expansivity (β) of gases at high pressure was developed based on the Peng–Robins...
No Abstract.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/37284/1/690010203_ftp.pd
AbstractLee-Kesler (LK) Equation of State (EoS) is the most accurate enthalpy model for gases. The p...
Isentropic processes in thermodynamics are fundamental to our understanding of numerous physical phe...
project TK03030121 Conceptual Design of an Innovative Safety System for Gas-cooled Nuclear Reactor
Due to several incentives for reducing energy consumption worldwide, there is an increasingly demand...
Cubic equations of state (EOS), such as the Peng-Robinson EOS, are routinely used by the oil and gas...
In this study the pressure effect on the inversion temperature of gases was determined. The gases se...
Computer program obtains the real-gas isentropic flow functions and thermodynamic properties of gase...
The efficiency of positive-displacement components is of prime importance in determining the overall...