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Convective heat transfer in circular and chevron impinging synthetic jets

机译:圆形和人字形撞击合成射流的对流传热

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摘要

An experimental investigation on the heat transfer enhancement achieved by impinging synthetic jets with vortex generators, in the form of chevron elements at the nozzle exit, is carried out. The heated thin foil heat transfer sensor is used in conjunction with the infrared thermography to measure the spatial distribution of the Nusselt number on the target plate. The heat transfer rates of impinging circular and chevron synthetic jets are compared under the same condition of cavity pressure. A parametric study on the effect of the dimensionless stroke length and the nozzle-to-plate distance on the heat transfer rates is carried out. For increasing dimensionless stroke length, at short nozzle-to-plate distances, the chevron synthetic jet reveals a star-shaped heat transfer pattern similar to that observed for an impinging continuous one. The results show that a chevron exit geometry can provide a significant heat transfer enhancement for relatively small nozzle-to-plate distances, up to a 20% increase with respect to the circular synthetic jet. At small dimensionless stroke lengths, such an enhancement is observed for a wide range of nozzle-to-plate distances. (C) 2018 Elsevier Ltd. All rights reserved.
机译:对通过在喷嘴出口处以人字形元件形式形成的涡流发生器撞击合成射流实现了增强传热的实验研究。加热的薄箔传热传感器与红外热像仪结合使用,可测量目标板上努塞尔数的空间分布。在相同的模腔压力条件下,比较了撞击的圆形和人字形合成射流的传热速率。对无量纲行程长度和喷嘴到板的距离对传热速率的影响进行了参数研究。为了增加无量纲的行程长度,在较短的喷嘴到板之间的距离处,人字形合成射流显示出星形传热模式,类似于连续撞击时所观察到的。结果表明,人字形出口几何形状可在相对较小的喷嘴到板距离上提供显着的传热增强,相对于圆形合成射流最多可增加20%。在较小的无量纲行程长度下,可在较大的喷嘴到板距离范围内观察到这种增强。 (C)2018 Elsevier Ltd.保留所有权利。

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