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CFD Analysis and Taguchi-Based Optimization of the Thermohydraulic Performance of a Solar Air Heater Duct Baffled on a Back Plate

机译:基于CFD分析和基于Taguchi的太阳能空气加热器管道的热液性能优化,在后板上挡板

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摘要

In this paper, a solar air collector duct equipped with baffles on a back plate was numerically investigated. The Reynolds number (Re) was varied from 5000 to 20,000, the angle baffle (a) from 30° to 120°, the baffle spacing ratio (Pr) from 2 to 8, and the baffle blockage ratio (Br) from 0.375 to 0.75 to examine their effects on the Nusselt number (Nu), the friction factor (f), and the thermohydraulic performance parameter (η). The 2D numerical simulation used the standard k-ε turbulence model with enhanced wall treatment. The Taguchi method was used to design the experiment, generating an orthogonal array consisting of four factors each at four levels. The optimization results from the Taguchi method and CFD analysis showed that the optimal geometry of a = 90°, Pr = 6, and Br = 0.375 achieved the maximum η. The influence of Br on all investigated parameters was considerable because as Br increased, a larger primary vortex region was formed downstream of the baffle. At Re = 5000 and the optimal geometry parameters, a maximum η of 1.01 was reached. A baffle angle between 60° and 90° achieved a high Nusselt number due to the impingement heat transfer.
机译:在本文中,在数值上研究了配备有背板上挡板的太阳能空气收集管。雷诺数(RE)从5000到20,000变化,角度挡板(a)从30°到120°,挡板间距比(Pr)为2〜8,挡板堵塞比(br)从0.375到0.75检查它们对露珠数(Nu),摩擦系数(F)和热液性能参数(η)的影响。 2D数值模拟用来增强壁处理的标准K-ε湍流模型。使用TAGUCHI方法来设计实验,产生由四个级别的四个因素组成的正交阵列。来自Taguchi方法和CFD分析的优化结果表明,A = 90°,Pr = 6和Br = 0.375的最佳几何形状实现了最大η。 BR对所有调查参数的影响是相当大的,因为随着BR的增加,围栏的下游形成了更大的主涡旋区域。在RE = 5000和最佳几何参数中,达到最大η为1.01。由于冲击传热,实现了60°和90°之间的挡板角度。

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