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Design, Analysis and Optimization of a Solar Dish/Stirling System

机译:太阳能盘/斯特林系统的设计,分析和优化

摘要

In this paper, a mathematical model by which the thermal and physical behavior of a solar dish/Stirling system was investigated, then the system was designed, analysed and optimized. In this regard, all of heat losses in a dish/Stirling system were calculated, then, the output net-work of the Stirling engine was computed, and accordingly, the system efficiency was worked out. These heat losses include convection and conduction heat losses, radiation heat losses by emission in the cavity receiver, reflection heat losses of solar energy in the parabolic dish, internal and external conduction heat losses, energy dissipation by pressure drops, and energy losses by shuttle effect in displacer piston in the Stirling engine. All of these heat losses in the parabolic dish, cavity receiver and Stirling engine were calculated using mathematical modeling in MatlabTM software. For validation of the proposed model, a 10 kW solar dish/Stirling system was designed and the simulation results were compared with the Eurodish system data with a reasonable degree of agreement. This model is used to investigate the effect of geometric and thermodynamic parameters including the aperture diameter of the parabolic dish and the cavity receiver, and the pressure of the compression space of the Stirling engine, on the system performance. By using the PSO method, which is an intelligent optimization technique, the total design was optimized and the optimal values of decision-making parameters were determined. The optimization has been done in two scenarios. In the first scenario, the optimal value of each designed parameter has been changed when the other parameters are equal to the designed case study parameters. In the second scenario, all of parameters were assumed in their optimal values. By optimization of the modeled dish/Stirling system, the total efficiency of the system improved to 0.60% in the first scenario and it increased from 21.69% to 22.62% in the second scenario of the optimization, while the system variables changed slightly. Article History: Received Sept 28, 2015; Received in revised form January 08, 2016; Accepted February 15, 2016; Available online How to Cite This Article: Nazemi, S. D. and Boroushaki, M. (2016) Design, Analysis and Optimization of a Solar Dish/Stirling System. Int. Journal of Renewable Energy Development, 5(1), 33-42. http://dx.doi.org/10.14710/ijred.5.1.33-42
机译:本文研究了一个数学模型,通过该模型研究了太阳能碟/斯特林系统的热和物理行为,然后对该系统进行了设计,分析和优化。在这方面,计算出盘式/斯特林系统中的所有热量损失,然后计算出斯特林发动机的输出网络,从而得出系统效率。这些热损失包括对流和传导热损失,通过腔体接收器的发射产生的辐射热损失,抛物面碟中太阳能的反射热损失,内部和外部传导热损失,通过压降产生的能量消耗以及通过穿梭效应产生的能量损失在斯特林发动机的活塞中。使用MatlabTM软件中的数学模型计算了抛物面碟,空腔接收器和斯特林发动机中的所有这些热量损失。为了验证所提出的模型,设计了一个10 kW的太阳能碟/斯特林系统,并将模拟结果与Eurodish系统数据进行了比较,并具有合理的一致性。该模型用于研究几何和热力学参数,包括抛物线形天线和腔体接收器的孔径,以及斯特林发动机压缩空间的压力对系统性能的影响。通过使用PSO方法(一种智能优化技术),优化了总体设计,并确定了决策参数的最佳值。优化已在两种情况下完成。在第一种情况下,当其他参数等于设计案例研究参数时,将更改每个设计参数的最优值。在第二种情况下,所有参数均假定为最佳值。通过优化建模的盘子/斯特林系统,系统的总效率在第一种情况下提高到0.60%,在优化的第二种情况下从21.69%提高到22.62%,而系统变量略有变化。文章历史记录:2015年9月28日收到;于2016年1月8日收到修订版; 2016年2月15日接受;在线提供如何引用本文:Nazemi,S.D.和Boroushaki,M.(2016)设计,分析和优化太阳能碟/斯特林系统。诠释Journal of Renewable Energy Development,5(1),33-42。 http://dx.doi.org/10.14710/ijred.5.1.33-42

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