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Thermodynamic Performance Characteristics of a Brownian Microscopic Heat Engine Driven by Discrete and Periodic Temperature Field

机译:离散和周期性温度场驱动的布朗微观热机的热力学性能特征

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摘要

A Brownian microscopic heat engine with a particle hopping on a one-dimensional lattice driven by a discrete and periodic temperature field in a periodic sawtooth potential is investigated. In order to clarify the underlying physical pictures of the heat engine, the heat flow via the potential energy and the kinetic energy of the particles are considered simultaneously. Based on describing the jumps among the three states, the expressions of the efficiency and power output of the heat engine are derived analytically. The general performance characteristic curves are plotted by numerical calculation. It is found that the power output-efficiency curve is a loop-shaped one, which is similar to one for a real irreversible heat engine. The influence of the ratio of the temperature of the hot and cold reservoirs and the sawtooth potential on the maximum efficiency and power output is analyzed for some given parameters. When the heat flows via the kinetic energy is neglected, the power output-efficiency curve is an open-shaped one, which is similar to one for an endroeversible heat engine.
机译:研究了布朗微微观热机,其在周期性锯齿势中的离散和周期性温度场驱动的一维晶格上具有粒子跳跃。为了阐明热机的基本物理图,同时考虑了通过势能和颗粒动能的热流。在描述这三种状态之间的跳跃的基础上,通过解析得出了热机效率和功率输出的表达式。一般性能特征曲线通过数值计算绘制。发现功率输出-效率曲线是环形的,类似于真实的不可逆热机的曲线。对于某些给定的参数,分析了冷热库温度与锯齿电位之比对最大效率和功率输出的影响。当通过动能流动的热量被忽略时,功率输出效率曲线是一个开放形状的曲线,类似于用于可旋转式热力发动机的功率曲线。

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