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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer characteristics of synthetic jet impingement cooling
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Heat transfer characteristics of synthetic jet impingement cooling

机译:合成射流冲击冷却的传热特性

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摘要

Synthetic jet is a novel flow technique which synthesizes stagnant air to form a jet, and is potentially useful for cooling applications. The impingement heat transfer characteristics of a synthetic jet are studied in this work. Toward that end, the behavior of the average heat transfer coefficient of the impinged heated surface with variation in the axial distance between the jet and the heated surface is measured. In addition, radial distribution of mean and rms velocity and static pressure are also measured. The experiments are conducted for a wide range of input parameters: the Reynolds number (Re) is in the range of 1500-4200, the ratio of the axial distance between the heated surface and the jet to the jet orifice diameter is in the range of 0-25, and the length of the orifice plate to the orifice diameter varies between 8 and 22 in this study. The maximum heat transfer coefficient with the synthetic jet is found to be upto 11 times more than the heat transfer coefficient for natural convection. The behavior of average Nusselt number is found to be similar to that obtained for a continuous jet. The exponent of maximum Nusselt number with Re varies between 0.6 and 1.4 in the present experiments, depending on the size of the enclosure. A direct comparison with a continuous jet is also made and their performances are found to be comparable under similar set of conditions. Such detailed heat transfer results with a synthetic jet have not been reported earlier and are expected to be useful for cooling of electronics and other devices.
机译:合成射流是一种新颖的流动技术,可以合成停滞的空气以形成射流,并且可能对冷却应用有用。在这项工作中研究了合成射流的撞击传热特性。为此,测量了喷射的受热表面的平均传热系数随射流与受热表面之间的轴向距离变化而变化的行为。另外,还测量了均值和均方根速度以及静压力的径向分布。针对广泛的输入参数进行了实验:雷诺数(Re)在1500-4200范围内,受热表面和喷嘴之间的轴向距离与喷嘴孔直径的比值在200至200之间。在本研究中,孔板的长度相对于孔直径为0-25,在8至22之间变化。发现合成射流的最大传热系数比自然对流的传热系数高11倍。发现平均努塞尔数的行为类似于连续射流获得的行为。在本实验中,最大Nusselt数与Re的指数在0.6到1.4之间变化,具体取决于外壳的大小。还与连续射流进行了直接比较,发现它们在类似条件下的性能相当。合成射流的这种详细的传热结果尚未在早期报道,并且有望用于电子设备和其他设备的冷却。

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