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Numerical Investigation Of Energy-efficient Receiver For Solar Parabolic Trough Concentrator

机译:太阳能抛物槽聚能器节能接收器的数值研究

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In this paper, a thermal analysis of an energy-efficient receiver for solar parabolic trough concentrator is presented. Various porous receiver geometries are considered for the performance evaluation of a solar parabolic trough concentrator. Numerical models are proposed for a porous energy-efficient receiver for internal heat gain characteristics and heat loss due to natural convection. The internal flow and heat transfer analysis is carried out based on a RNG k-ε turbulent model, whereas external heat losses are treated as a laminar natural convection model. The numerical models have been solved using the commercial engineering package, FLUENT. The thermal analysis of the receiver is carried out for various geometrical parameters, such as fin aspect ratio, thickness, and porosity, for different heat flux conditions. The inclusion of porous inserts in tubular receiver of solar trough concentrator enhanced the heat transfer about 17.5% with a pressure penalty of 2 kPa. The Nusselt number correlation is proposed based on the extensive numerical data for internal heat transfer inside the receiver. The proposed model is compared with more well-known natural convection models. A comparative study is carried out with different porous geometries to evolve an optimum configuration of energy-efficient receivers.
机译:本文介绍了太阳能抛物槽式聚光器节能接收器的热分析。考虑了各种多孔接收器的几何形状,以评估太阳能抛物槽式聚光器的性能。提出了一种用于多孔节能接收器的数值模型,用于内部热吸收特性和自然对流造成的热损失。内部流动和传热分析是基于RNGk-ε湍流模型进行的,而外部热损失则被视为层流自然对流模型。数值模型已经使用商业工程软件包FLUENT进行了求解。针对不同的热通量条件,针对各种几何参数(例如鳍长宽比,厚度和孔隙率)执行接收器的热分析。在太阳能槽式聚光器的管状接收器中包含多孔插入物,使热传递提高了约17.5%,压力损失为2 kPa。基于接收器内部内部传热的大量数值数据,提出了Nusselt数相关性。将该模型与更著名的自然对流模型进行了比较。对不同的多孔几何形状进行了比较研究,以发展节能接收机的最佳配置。

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