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Optimum performance characteristics of a solar-driven Stirling heat engine system

机译:太阳能斯特林热机系统的最佳性能特征

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摘要

A solar-driven Stirling heat engine system composed of a Stirling heat engine, a solar collector, and a heat sink is presented, in which the radiation and convection heat losses of the solar collector, the heat-leak between the thermal absorber and heat sink, the regenerative losses of the Stirling heat engine, and the energy balance between the thermal absorber and the high isothermal process of the Stirling heat engine are taken into consideration. Based on the irreversible thermodynamics and Lagrange multiplier method, the maximum power output and the corresponding optimal efficiency of the system are determined and the absorber temperature that maximizes the optimal system efficiency is calculated numerically. The influences of some system parameters such as the concentrating ratio, the volume ratio during the regenerative processes and irreversibilities of heat exchange processes on the optimal efficiency are analyzed in details. The results obtained here may provide a new idea to design practical solar-driven Stirling heat engine system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种由斯特林热机,太阳能集热器和散热器组成的太阳能斯特林热机系统,其中太阳能集热器的辐射和对流热损失,吸热器和散热器之间的热泄漏考虑到斯特林热机的再生损失,以及斯特林热机的吸热器和高等温过程之间的能量平衡。基于不可逆热力学和拉格朗日乘数法,确定了系统的最大功率输出和相应的最佳效率,并数值计算了使最佳系统效率最大化的吸收器温度。详细分析了浓缩比,再生过程中的体积比,热交换过程的不可逆性等系统参数对最佳效率的影响。此处获得的结果可能为设计实用的太阳能斯特林热机系统提供新思路。 (C)2015 Elsevier Ltd.保留所有权利。

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