Abstract: In this paper, exergy destruction minimization has been carried out for an irreversible Carnot refrigeration cycle. The rates of destroyed exergy in various portion of this physical model are derived. The goal of exergy destruction minimization is to minimize the rate of total destroyed exergy of the system. By defining the recovery factor during power input process and introducing an irreversibility coefficient of the system, the optimum cycle temperatures in the isothermal cooling process and the isothermal heating process are obtained. The optimum values of cycle cooling rate, coefficient of performance of the system, and total destroyed exergy rate are derived simultaneously. The influences of various parameters on these optim...
This paper provides an exergy analysis of the multistage refrigeration cycle used for C2+ recovery p...
An exergy analysis of a refrigeration compressor is presented in this report. The purpose is to iden...
On the basis of the exergy analysis, a performance optimization is carried out for a generalized irr...
A reverse Carnot cycle forms the basis of all heat-pump cycles in providing heating and cooling load...
A reverse Carnot cycle forms the basis of all heat-pump cycles in providing heating and cooling load...
In this work we include, for the Carnot cycle, irreversibilities of linear finite rate of heat trans...
In this study, the behaviour of a vapour-compression refrigeration cycle, for different refrigerants...
A process is thermodynamically ideal if it leads to no exergy loss. In practice, the divergence from...
In this proposed work, analysis of change in exergy of various refrigerants who are having zero ozon...
The performance of the Carnot cycle and a vapor-compression refrigeration cycle can be optimized by ...
In this study, an exergy optimization has been performed for a cogeneration plant consisting of an i...
In this proposed work, analysis of change in exergy of various refrigerants who are having zero ozon...
The project deals with the optimization of refrigeration and thermal systems in order to minimize th...
The optimal exergy-based ecological performance of a Newton's law generalized irreversible Carnot he...
A Carnot-like irreversible refrigeration cycle is modelled with two isothermal and two non-adiabatic...
This paper provides an exergy analysis of the multistage refrigeration cycle used for C2+ recovery p...
An exergy analysis of a refrigeration compressor is presented in this report. The purpose is to iden...
On the basis of the exergy analysis, a performance optimization is carried out for a generalized irr...
A reverse Carnot cycle forms the basis of all heat-pump cycles in providing heating and cooling load...
A reverse Carnot cycle forms the basis of all heat-pump cycles in providing heating and cooling load...
In this work we include, for the Carnot cycle, irreversibilities of linear finite rate of heat trans...
In this study, the behaviour of a vapour-compression refrigeration cycle, for different refrigerants...
A process is thermodynamically ideal if it leads to no exergy loss. In practice, the divergence from...
In this proposed work, analysis of change in exergy of various refrigerants who are having zero ozon...
The performance of the Carnot cycle and a vapor-compression refrigeration cycle can be optimized by ...
In this study, an exergy optimization has been performed for a cogeneration plant consisting of an i...
In this proposed work, analysis of change in exergy of various refrigerants who are having zero ozon...
The project deals with the optimization of refrigeration and thermal systems in order to minimize th...
The optimal exergy-based ecological performance of a Newton's law generalized irreversible Carnot he...
A Carnot-like irreversible refrigeration cycle is modelled with two isothermal and two non-adiabatic...
This paper provides an exergy analysis of the multistage refrigeration cycle used for C2+ recovery p...
An exergy analysis of a refrigeration compressor is presented in this report. The purpose is to iden...
On the basis of the exergy analysis, a performance optimization is carried out for a generalized irr...