Applied Energy, Vol.85, No.1, 52-60, 2008
Generalized irreversible heat-engine experiencing a complex heat-transfer law
The fundamental optimal relation between optimal power-output and efficiency of a generalized irreversible Carnot heat-engine is derived based on a generalized heat-transfer law, including a generalized convective heat-transfer law and a generalized radiative heat-transfer law, q proportional to (Delta T-n)(m). The generalized irreversible Carnot-engine model incorporates several internal and external irreversibilities, such as heat resistance, bypass heat-leak, friction, turbulence and other undesirable irreversibility factors. The added irreversibilities, besides heat resistance, are characterized by a constant parameter and a constant coefficient. The effects of heat-transfer laws and various loss terms are analyzed. The results obtained corroborate those in the literature. (C) 2007 Elsevier Ltd. All rights reserved.
Keywords:finite-time thermodynamics;entropy-generation minimization;irreversible carnot heat-engine;optimal performance;heat-transfer law