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Turbulent convection in a solar air heater channel with baffles/winglets

机译:带有折流板/小翼的太阳能空气加热器通道中的湍流对流

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The paper presents a study on heat transfer, friction loss and thermal performance behaviors in a solar air heater channel fitted with baffle turbulator (BT) or triangular-winglet vortex generator (WVG) at various winglet/baffle to channel-height or blockage ratios (BR=b/H=0.1 0.15 and 0.2). The BT and the WVG were placed only on the upper wall/absorber plate of the test channel at a single axial pitch ratio (PR=P1/H=4). The investigation is performed for the Reynolds number ranging from 5400 to 23,000. The upper wall of the channel is uniformly heated as a constant heat flux while the rests are covered with thermal insulations to reduce heat loss to surroundings. The BT and the WVG were, respectively, mounted with the attack angle of 90° and 60° relative to main flow direction. The experimental results indicate that the absorber plate with the WVGs provides considerable improvement of the heat transfer rate over the smooth channel around 4.29 to 4.33 times for BR=0.2. The use of the WVG placed on the absorber plate leads to the highest heat transfer rate, friction factor and thermal performance in comparison with the BT and the smooth channel. The WVG at BR=0.2 provides the maximum thermal performance up to 1.61. Thus, because of stronger vortex flow, the WVG at largest BR becomes influential upon the heat transfer and thermal performance enhancement.
机译:本文介绍了在装有折流湍流器(BT)或三角小翼涡流发生器(WVG)的太阳能空气加热器通道中,在不同的小翼/折流板与通道高度或阻塞比下的传热,摩擦损失和热性能行为的研究( BR = b / H = 0.1 0.15和0.2)。 BT和WVG仅以单个轴向螺距比(PR = P1 / H = 4)放置在测试通道的上壁/吸收板上。对雷诺数从5400到23,000进行调查。通道的上壁以恒定的热通量被均匀加热,其余部分则被隔热材料覆盖,以减少对周围环境的热损失。 BT和WVG分别相对于主流方向以90°和60°的迎角安装。实验结果表明,对于BR = 0.2,具有WVGs的吸收板在光滑通道上的传热速率有显着提高,约为4.29至4.33倍。与BT和平滑通道相比,放置在吸收板上的WVG的使用可带来最高的传热速率,摩擦系数和热性能。 BR = 0.2时的WVG可提供高达1.61的最大热性能。因此,由于较强的涡流,最大BR处的WVG对传热和热性能的提高有影响。

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