Asfaw Mesfin, Bekele Mulugeta
Department of Physics, Addis Ababa University, P.O.Box 1176, Addis Ababa, Ethiopia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Nov;72(5 Pt 2):056109. doi: 10.1103/PhysRevE.72.056109. Epub 2005 Nov 7.
We model a microscopic heat engine as a particle hopping on a one-dimensional lattice in a periodic sawtooth potential, with or without load, assisted by the thermal kicks it gets from alternately placed hot and cold thermal baths. We find analytic expressions for current and rate of heat flow when the engine operates at steady state. Three regions are identified where the model acts either as a heat engine or as a refrigerator or as neither of the two. At the quasistatic limit both efficiency of the engine and coefficient of performance of the refrigerator go to that for Carnot engine and Carnot refrigerator, respectively. We investigate efficiency of the engine at two operating conditions (at maximum power and at optimum value with respect to energy and time) and compare them with those of the endoreversible and Carnot engines.
我们将一个微观热机建模为一个粒子在周期性锯齿势的一维晶格上跳跃,有无负载,在交替放置的热浴和冷浴给予的热涨落辅助下进行。我们找到了热机在稳态运行时电流和热流率的解析表达式。确定了三个区域,在这些区域中该模型要么作为热机,要么作为制冷机,要么两者都不是。在准静态极限下,热机效率和制冷机性能系数分别达到卡诺热机和卡诺制冷机的效率和性能系数。我们研究了热机在两种运行条件下(最大功率以及能量和时间方面的最优值)的效率,并将它们与内可逆热机和卡诺热机的效率进行比较。