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Modeling an efficient Brownian heat engine

机译:建模高效的布朗热机

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摘要

We discuss the effect of subdividing the ratchet potential on the performance of a tiny Brownian heat engine that is modeled as a Brownian particle hopping in a viscous medium in a sawtooth potential (with or without load) assisted by alternately placed hot and cold heat baths along its path. We show that the velocity, the efficiency and the coefficient of performance of the refrigerator maximize when the sawtooth potential is subdivided into series of smaller connected barrier series. When the engine operates quasistatically, we analytically show that the efficiency of the engine can not approach the Carnot efficiency and, the coefficient of performance of the refrigerator is always less than the Carnot refrigerator due to the irreversible heat flow via the kinetic energy.
机译:我们讨论了细分棘轮电势对微型布朗热机性能的影响,该模型被建模为在粘性介质中在锯齿势(带或不带负载)下在黏性介质中的布朗粒子跳变,并通过沿水冷热浴交替放置它的路径。我们表明,当锯齿势细分为一系列较小的连接势垒系列时,冰箱的速度,效率和性能系数达到最大。当发动机准静态运行时,我们通过分析表明,发动机的效率无法达到卡诺效率,并且由于动能的不可逆热流,冰箱的性能系数始终小于卡诺冰箱。

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