Asfaw Mesfin
Department of Physics and Astronomy, California State University Northridge, California 91330-8268, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Jan;89(1):012143. doi: 10.1103/PhysRevE.89.012143. Epub 2014 Jan 29.
A generalized theory of nonequilibrium thermodynamics for a Brownian motor operating between two different heat baths is presented. Via a simple paradigmatic model, we not only explore the thermodynamic feature of the engine in the regime of the nonequilibrium steady state but also study the short time behavior of the system for either the isothermal case with load or, in general, the nonisothermal case with or without load. Many elegant thermodynamic theories can be checked via the present model. Furthermore the dependence of the velocity, the efficiency, and the performance of the refrigerator on time t is examined. Our study reveals a current reversal due to time t. In the early system relaxation period, the model works neither as a heat engine nor as a refrigerator and only after a certain period of time does the model start functioning as a heat engine or as a refrigerator. The performance of the engine also improves with time and at steady state the engine manifests a higher efficiency or performance as a refrigerator. Furthermore the effect of energy exchange via the kinetic energy on the performance of the heat engine is explored.
提出了一种适用于在两个不同热库之间运行的布朗马达的非平衡热力学广义理论。通过一个简单的范例模型,我们不仅探讨了非平衡稳态下发动机的热力学特性,还研究了有负载等温情况或一般有负载或无负载非等温情况下系统的短时间行为。许多优美的热力学理论都可以通过本模型进行检验。此外,还研究了速度、效率和制冷机性能对时间t的依赖性。我们的研究揭示了由于时间t导致的电流反转。在系统早期弛豫阶段,该模型既不作为热机也不作为制冷机工作,只有在一段时间后,该模型才开始作为热机或制冷机运行。发动机的性能也随时间提高,在稳态下,发动机作为制冷机表现出更高的效率或性能。此外,还探讨了通过动能进行能量交换对热机性能的影响。