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Modeling and Performance Optimization of an Irreversible Two-Stage Combined Thermal Brownian Heat Engine

机译:不可逆两阶段组合热布线热发动机的建模与性能优化

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摘要

Based on finite time thermodynamics, an irreversible combined thermal Brownian heat engine model is established in this paper. The model consists of two thermal Brownian heat engines which are operating in tandem with thermal contact with three heat reservoirs. The rates of heat transfer are finite between the heat engine and the reservoir. Considering the heat leakage and the losses caused by kinetic energy change of particles, the formulas of steady current, power output and efficiency are derived. The power output and efficiency of combined heat engine are smaller than that of single heat engine operating between reservoirs with same temperatures. When the potential filed is free from external load, the effects of asymmetry of the potential, barrier height and heat leakage on the performance of the combined heat engine are analyzed. When the potential field is free from external load, the effects of basic design parameters on the performance of the combined heat engine are analyzed. The optimal power and efficiency are obtained by optimizing the barrier heights of two heat engines. The optimal working regions are obtained. There is optimal temperature ratio which maximize the overall power output or efficiency. When the potential filed is subjected to external load, effect of external load is analyzed. The steady current decreases versus external load; the power output and efficiency are monotonically increasing versus external load.
机译:基于有限时间热力学,本文建立了一种不可逆的热褐色发动机模型。该模型由两个热褐色热风发动机组成,其与与三个热储存器的热接触一起操作。传热率在热发动机和储存器之间是有限的。考虑到颗粒的动能变化引起的热泄漏和损耗,推导出稳定电流,功率输出和效率的公式。组合热发动机的功率输出和效率小于具有相同温度的储存器之间的单热力发动机的电力输出和效率。当潜在的归档没有外部载荷时,分析了潜在,屏障高度和热泄漏对组合热动发动机性能的不对称性的影响。当潜在场没有外部负荷时,分析了基本设计参数对组合热引擎性能的影响。通过优化两个热动发动机的屏障高度来获得最佳功率和效率。获得最佳工作区域。有最佳的温度比,最大化整体功率输出或效率。当潜在载体进行外部载荷时,分析外部负荷的效果。稳定电流降低与外部负荷;功率输出和效率在单调增加与外部负载。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2021(23),4
  • 年度 2021
  • 页码 419
  • 总页数 22
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:有限时间热力学;热褐色发动机;组合循环;功率输出;效率;性能优化;

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