Title of article
Power, efficiency, entropy-generation rate and ecological optimization for a class of generalized irreversible universal heat-engine cycles
Author/Authors
Lingen Chen، نويسنده , , Wanli Zhang، نويسنده , , Fengrui Sun، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
14
From page
512
To page
525
Abstract
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 with the losses of heat-resistance, heat leak and internal irreversibility.
Keywords
Generalized thermodynamic-optimization , Heat leak , Internal irreversibility , Power , Efficiency , heat resistance , Finite-time thermodynamics , Entropy-generation rate , Ecological function
Journal title
Applied Energy
Serial Year
2007
Journal title
Applied Energy
Record number
414720
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