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Experimental Investigation of Heat Transfer from a Discretely Heated Protruding Pedestal to a Single Round Impinging Air Jet

机译:从离散加热突出的射击空气射流从离散加热突出射击的试验研究

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An experimental investigation to understand the influence of the impingement surface geometry on the heat transfer from a discretely heated surface to a single round impinging jet is conducted. In this study, heat transfer at the stagnation region of a discretely heated pedestal protruding into an air stream is compared to the heat transfer on a discretely heated flat plate to determine the influence of impingement surface geometry on heat transfer for various Reynolds numbers, jet diameters and jet exit-surface spacings. The round jet issues from a tube of diameter 3.5 mm, 9.5 mm or 21 mm at jet exit-to-surface distances of 2-5 diameters with Re = 10,000 - 30,000. Under all operating conditions, the presence of a protruding pedestal is found to increase heat transfer.
机译:对理解冲击表面几何形状对从离散加热表面的热传递到单个撞击射流的热传递的实验研究。 在该研究中,将在离散加热的基座的停滞区域的传热与离散加热的平板上的传热进行比较,以确定冲击表面几何形状对各种雷诺数的热传递的影响,喷射直径 和喷射出口表面间距。 圆形射流从直径3.5毫米,9.5毫米或21毫米的管道,在喷射到表面距离为2-5直径,重新= 10,000 - 30,000。 在所有操作条件下,发现存在突出的基座以增加热传递。

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