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Heat transfer and thermodynamic performance of a parabolic trough receiver with centrally placed perforated plate inserts

机译:具有中心放置的多孔板插入件的抛物线槽接收器的传热和热力学性能

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摘要

In this paper, a numerical investigation of thermal and thermodynamic performance of a receiver for a parabolic trough solar collector with perforated plate inserts is presented. The analysis was carried out for different perforated plate geometrical parameters including dimensionless plate orientation angle, the dimensionless plate spacing, and the dimensionless plate diameter. The Reynolds number varies in the range 1.02 × 10~4 ≤ Re ≤ 7.38 × 10~5 depending on the heat transfer fluid temperature. The fluid temperatures used are 400 K, 500 K, 600 K and 650 K. The porosity of the plate was fixed at 0.65. The study shows that, for a given value of insert orientation, insert spacing and insert size, there is a range of Reynolds numbers for which the thermal performance of the receiver improves with the use of perforated plate inserts. In this range, the modified thermal efficiency increases between 1.2% and 8%. The thermodynamic performance of the receiver due to inclusion of perforated plate inserts is shown to improve for flow rates lower than 0.01205 m~3/s. Receiver temperature gradients are shown to reduce with the use of inserts. Correlations for Nusselt number and friction factor were also derived and presented.
机译:在本文中,对带有多孔板嵌件的抛物槽式太阳能集热器的接收器的热和热力学性能进行了数值研究。对不同的穿孔板几何参数进行了分析,包括无量纲的板取向角,无量纲的板间距和无量纲的板直径。雷诺数根据传热流体的温度在1.02×10〜4≤Re≤7.38×10〜5的范围内变化。所使用的流体温度为400 K,500 K,600 K和650K。板的孔隙率固定为0.65。研究表明,对于给定的刀片方向,刀片间距和刀片尺寸值,存在一定范围的雷诺数,通过使用多孔板刀片,接收器的热性能得以改善。在此范围内,改进的热效率在1.2%和8%之间增加。对于低于0.01205 m〜3 / s的流速,由于包含多孔板嵌件,接收器的热力学性能得到了改善。示出了接收器温度梯度随着插入件的使用而降低。还推导并提出了努塞尔数和摩擦系数的相关性。

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