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Experimental investigation on convection heat transfer in solar air heater with perforated-winglet vortex generators

机译:穿孔小翼涡发生器在太阳能空气加热器中对流换热的实验研究

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An experimental investigation on thermal and flow friction characteristics of turbulent flow in a solar air heater duct with perforated rectangular winglet (PRW) vortex generators placed repeatedly on the absorber plate has been carried out. The experimental work is performed by varying the airflow rate in the form of Reynolds number from 5300 to 23,000. The PRW elements are mounted repeatedly with four perforated-winglets having punched hole diameters, (d=1.5, 3, 5 and 8 mm) at a single attack angle (α=45o), pitch ratio (PR=2) and blockage ratio (BR=0.4). Influences of the PRW parameters on heat transfer characteristics in terms of Nusselt number (Nu) and friction factor (f) are investigated. The obtained result reveals that the employ of PRW elements provides much higher heat transfer and friction loss than using the duct alone. Although the non-perforated rectangular winglet, RW (without holes) gives the maximum heat transfer and friction loss but the highest thermal performance is found for the PRW with punched hole diameter of 5 mm.
机译:进行了对带有重复放置在吸收板上的带孔矩形小翼(PRW)涡流发生器的太阳能空气加热器管道中湍流的热和流摩擦特性的实验研究。通过改变雷诺数从5300到23,000的气流速率来执行实验工作。 PRW元件通过四个穿孔小翼重复安装,该四个穿孔小翼的冲孔直径(d = 1.5、3、5和8 mm)的冲角为(α= 45o),俯仰比(PR = 2)和阻挡比为( BR = 0.4)。研究了PRW参数对换热特性的努塞尔数(Nu)和摩擦系数(f)的影响。所得结果表明,与单独使用导管相比,采用PRW元件可提供更高的热传递和摩擦损失。尽管无孔矩形小翼RW(无孔)可提供最大的热传递和摩擦损失,但对于冲孔直径为5 mm的PRW,其热性能最高。

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