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Parametric optimization of a solar-driven Braysson heat engine with variable heat capacity of the working fluid and radiation-convection heat losses

机译:具有可变工作流体热容量和辐射对流热损失的太阳能驱动Braysson热机的参数优化

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摘要

An irreversible solar-driven Braysson heat engine system is presented, in which the temperature-dependent heat capacity of the working fluid, the radiation-convection heat losses of the solar collector and the irreversibilities resulting from heat transfer and non-isentropic compression and expansion processes are taken into account. Based on the thermodynamic analysis method and the optimal control theory, the mathematical expression of the overall efficiency of the system is derived and the maximum overall efficiency is calculated, and the operating temperatures of the solar collector and the cyclic working fluid and the ratio of heat-transfer areas of the heat engine are optimized. By using numerical optimization technology, the influences of the variable heat capacity of the working fluid, the radiation-convection heat losses of the solar collector and the multi-irreversibilities on the performance characteristics of the solar-driven heat engine system are investigated and evaluated in detail. Moreover, it is expounded that the optimal performance and important parametric bounds of the irreversible solar-driven Braysson heat engine with the constant heat capacity of the working fluid and the irreversible solar-driven Carnot heat engine can be deduced from the conclusions in the present paper.
机译:提出了一种不可逆的太阳能驱动的布雷森热机系统,其中,工作流体的温度相关热容量,太阳能收集器的辐射对流热损失以及热传递和非等熵压缩和膨胀过程导致的不可逆性被考虑在内。基于热力学分析方法和最优控制理论,推导了系统整体效率的数学表达式,并计算出最大整体效率,并得出了太阳能集热器和循环工作流体的工作温度以及热量比-热机的传递区域被优化。通过数值优化技术,研究和评估了工作流体的可变热容量,太阳能集热器的辐射对流热损失以及多重不可逆性对太阳能驱动热机系统性能特性的影响。详情。此外,从本文的结论可以推论出具有恒定工作流体热容量的不可逆太阳能驱动的布雷森热机和不可逆太阳能驱动的卡诺热机的最佳性能和重要的参数界限。 。

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