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Thermal behavior in solar air heater channel fitted with combined rib and delta-winglet

机译:装有肋片和三角翼小翼的太阳能空气加热器通道的热行为

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Effects of combined ribs and delta-winglet type vortex generators (DWs) on forced convection heat transfer and friction loss behaviors for turbulent airflow through a solar air heater channel are experimentally investigated in the present work. Measurements are carried out in the rectangular channel of aspect ratio, AR = 10 and height, H = 30 mm. The flow rate is presented in the form of Reynolds numbers based on the inlet hydraulic diameter of the channel ranging from 5000 to 22,000. The cross-section shape of the rib placed on the absorber plate to create a reverse-flow is an isosceles triangle with a single rib height, e/H = 0.2 and rib pitch, P_1/H = 1.33. Ten pairs of the DW with its height, b/H = 0.4; transverse pitch, P_t/H = 1 and three attack angles (a) of 60°, 45° and 30° are introduced and mounted on the lower plate entrance of the tested channel to generate longitudinal vortex flows. The experimental results show that the Nusselt number and friction factor values for combined rib and DW are found to be much higher than those for the rib/DW alone. The larger attack angle of the DW leads to higher heat transfer and friction loss than the lower one. In common with the rib, the DW pointing upstream (PU-DW) is found to give higher heat transfer rate and friction loss than the DW pointing downstream (PD-DW) at a similar operating condition. In comparison, the largest attack angle (a= 60°) of the PU-DW yields the highest increase in both the Nusselt number and friction factor while the lowest attack angle of the PD-DW provides the best thermal performance.
机译:在本工作中,通过实验研究了组合肋和三角翼小涡旋发生器(DW)对湍流通过太阳能空气加热器通道的强迫对流传热和摩擦损失行为的影响。在纵横比为AR = 10且高度为H = 30 mm的矩形通道中进行测量。流量以雷诺数的形式表示,取决于通道的入口液压直径,范围为5000至22,000。放置在吸收板上以产生逆流的肋的横截面形状为等腰三角形,其等高三角形的高度为e / H = 0.2,肋节距为P_1 / H = 1.33。十对DW,其高度b / H = 0.4;横向节距P_t / H = 1并引入60°,45°和30°的三个迎角(a)并将其安装在测试通道的下板入口,以产生纵向涡流。实验结果表明,结合的肋骨和DW的Nusselt数和摩擦系数值远远高于单独的肋骨/ DW。与较低的DW相比,DW的较大迎角会导致更高的传热和摩擦损失。与肋骨相同,在相似的工作条件下,指向上游的DW(PU-DW)比指向下游的DW(PD-DW)具有更高的传热速率和摩擦损失。相比之下,PU-DW的最大迎角(a = 60°)则使Nusselt数和摩擦系数均增加最大,而PD-DW的最低迎角提供了最佳的热性能。

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