English

Experimental implementation of finite-time Carnot cycle

Statistical Mechanics 2022-06-22 v1

Abstract

The Carnot cycle is a prototype of ideal heat engine to draw mechanical energy from the heat flux between two thermal baths with the maximum efficiency, dubbed as the Carnot efficiency ηC\eta_{\mathrm{C}}. Such efficiency can only be reached by thermodynamical equilibrium processes with infinite time, accompanied unavoidably with vanishing power - energy output per unit time. In real-world applications, the quest to acquire high power leads to an open question whether a fundamental maximum efficiency exists for finite-time heat engines with given power. We experimentally implement a finite-time Carnot cycle with sealed dry air as working substance and verify the existence of a tradeoff relation between power and efficiency. Efficiency up to (0.524±0.034)ηC(0.524\pm0.034)\eta_{\mathrm{C}} is reached for the engine to generate the maximum power, consistent with the theoretical prediction ηC/2\eta_{\mathrm{C}}/2. Our results shall provide a new platform for studying finite-time thermodynamics consisting of nonequilibrium processes.

Keywords

Cite

@article{arxiv.2206.10153,
  title  = {Experimental implementation of finite-time Carnot cycle},
  author = {Ruo-Xun Zhai and Fang-Ming Cui and Yu-Han Ma and C. P. Sun and Hui Dong},
  journal= {arXiv preprint arXiv:2206.10153},
  year   = {2022}
}

Comments

4 pages, 3 figures

R2 v1 2026-06-24T11:58:02.655Z