Publication | Open Access
Universal Trade-Off Relation between Power and Efficiency for Heat Engines
281
Citations
33
References
2016
Year
EngineeringHeat RecoveryEnergy EfficiencyEnergy ConversionGeneral Lower BoundEnergy PerformanceThermal EnergyHeat EngineCarnot EfficiencyThermodynamicsHeat PumpThermodynamic EquilibriumElectrical EngineeringHeat TransferNon-equilibrium ProcessPower EfficiencyHeat EnginesNon-equilibrium ThermodynamicsEnergy ManagementEntropyEntropy ProductionEquilibrium ThermodynamicsThermal Engineering
For a general thermodynamic system described as a Markov process, we prove a general lower bound for dissipation in terms of the square of the heat current, thus establishing that nonvanishing current inevitably implies dissipation. This leads to a universal trade-off relation between efficiency and power, with which we rigorously prove that a heat engine with nonvanishing power never attains the Carnot efficiency. Our theory applies to systems arbitrarily far from equilibrium, and does not assume any specific symmetry of the model.
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