The optimal performance for a class of generalized irreversible universal steady-flow heat-engine cycle models, consisting of two heating branches, two cooling branches and two adiabatic branches, and with losses due to heat-resistance, heat leaks and internal irreversibility was analyzed using finite-time thermodynamics. The analytical formulae for power, efficiency, entropy-generation rate and an ecological criterion of the irreversible heat-engine cycle are derived. Moreover, analysis and optimization of the model were carried out in order to investigate the effect of the cycle process on the performance of the cycles. The results obtained include the performance characteristics of Diesel, Otto, Brayton, Atkinson, Dual and Miller cycles ...
In this work we include, for the Carnot cycle, irreversibilities of linear finite rate of heat trans...
Cycle model extension and universalization with different performance indicators and with all of los...
This paper presents an ecological performance analysis and optimization for an air-standard irrevers...
The performance of a generalized irreversible reciprocating heat-engine cycle model consisting of tw...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
The optimal exergy-based ecological performance of a generalized irreversible Carnot-engine with los...
The fundamental optimal relation between optimal power-output and efficiency of a generalized irreve...
A general irreversible cycle model is used to investigate the optimal performance of a class of heat...
The performance of an air standard Otto-cycle is analyzed using finite-time thermodynamics. In the i...
In this work we include, for the Carnot cycle, irreversibilities of linear finite rate of heat trans...
Cycle model extension and universalization with different performance indicators and with all of los...
This paper presents an ecological performance analysis and optimization for an air-standard irrevers...
The performance of a generalized irreversible reciprocating heat-engine cycle model consisting of tw...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
A thermodynamic analysis is presented by means of mathematical formulation to examine the performanc...
The optimal exergy-based ecological performance of a generalized irreversible Carnot-engine with los...
The fundamental optimal relation between optimal power-output and efficiency of a generalized irreve...
A general irreversible cycle model is used to investigate the optimal performance of a class of heat...
The performance of an air standard Otto-cycle is analyzed using finite-time thermodynamics. In the i...
In this work we include, for the Carnot cycle, irreversibilities of linear finite rate of heat trans...
Cycle model extension and universalization with different performance indicators and with all of los...
This paper presents an ecological performance analysis and optimization for an air-standard irrevers...