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Enhancement of air jet impingement heat transfer using pin-fin heat sinks

机译:使用针翅式散热器增强空气喷射的传热

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摘要

The enhancement of heat transfer from a discrete heat source in confined air jet impingement was experimentally investigated. A variety of pin-fin heat sinks were mounted on the heat source and the resulting enhancement studied, Average heat transfer coefficients are presented for a range of jet Reynolds numbers (8000/spl les/Re/spl les/45000) and orifice diameters (12.7/spl les/d/spl les/38.1 mm). A total fin effectiveness was computed for the pinned heat sinks relative to the unpinned ones, and was in the range of 2.4 to 9.2; the highest value was obtained for the largest nozzle diameter. Heat transfer rates from the bare heat source were increased by a factor of 7.5 to 72 due to the introduction of the heat sinks. Results for the average heat transfer coefficient were correlated in terms of Reynolds number, fluid properties and geometric parameters of the heat sinks.
机译:实验研究了密闭空气射流冲击中来自离散热源的传热增强。在热源上安装了多种针翅式散热器,并对其进行了改进研究。给出了一系列雷诺数(8000 / spl les / Re / spl les / 45000)和孔口直径( 12.7 / spl les / d / spl les / 38.1毫米)。相对于非固定散热器,计算了固定散热器的总散热片效率,范围为2.4到9.2。对于最大的喷嘴直径,获得了最大值。由于引入了散热片,来自裸机热源的传热速率提高了7.5倍至72倍。平均传热系数的结果与雷诺数,散热器的流体特性和几何参数相关。

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