Intrinsically irreversible light-driven engine
- 15 October 1985
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 58 (8) , 2893-2901
- https://doi.org/10.1063/1.336281
Abstract
We examine a reciprocating heat engine which necessarily operates far from equilibrium and about an unstable steady state. The piston of the engine is driven by the nonlinear coupling of the working fluid to an external light source which provides high quality heat and to the environment into which waste heat is dumped. We determine the piston trajectories that optimize two different criteria of process performance, the maximization of work output, and the minimization of entropy production. The trajectories optimizing different performance goals are qualitatively different. In engines not dominated by friction losses, the cycle optimizing work output requires that the expansion stroke begins with a slight compression and the temperature of the working fluid increases briefly.This publication has 12 references indexed in Scilit:
- Thermodynamics for processes in finite timeAccounts of Chemical Research, 1984
- Light induced bistability in S2O6F2⇄2 SO3F: Theory and experimentThe Journal of Chemical Physics, 1984
- Optimization of a heat engine based on a dissipative systemJournal of Applied Physics, 1983
- Experiments with an Intrinsically Irreversible Acoustic Heat EnginePhysical Review Letters, 1983
- On the efficiency of thermal engines with power output: Consideration of inertial effectsThe Journal of Chemical Physics, 1981
- Finite time optimizations of a Newton’s law Carnot cycleThe Journal of Chemical Physics, 1981
- Optimal configuration of an irreversible heat engine with fixed compression ratioPhysical Review A, 1980
- Maximum work production from a heated gas in a cylinder with pistonChemical Physics Letters, 1980
- On the efficiency of rate processes. Power and efficiency of heat enginesThe Journal of Chemical Physics, 1978
- Thermodynamics in finite time. I. The step-Carnot cyclePhysical Review A, 1977