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Turbulent Heat Transfer From a Slot Jet Impinging on a Flat Plate

机译:狭缝射流撞击平板的湍流传热

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摘要

The flow field and heat transfer of a plane impinging jet on a hot moving wall were investigated using one point closure turbulence model. Computations were carried out by means of a finite volume method. The evolutions of mean velocity components, vorticity, skin friction coefficient, Nusselt number and pressure coefficient are examined in this paper. Two parameters of this type of interaction are considered for a given impinging distance of 8 times the nozzle thickness (H/e = 8): the jet-surface velocity ratio and the jet exit Reynolds number. The flow field structure at a given surface-to-jet velocity ratio is practically independent to the jet exit Reynolds number. A slight modification of the flow field is observed for weak surface-to-jet velocity ratios while the jet is strongly driven for higher velocity ratio. The present results satisfactorily compare to the experimental data available in the literature for Rsj ≤ 1.The purpose of this paper is to investigate this phenomenon for higher Rsj values (0 ≤ Rsj ≤ 4). It follows that the variation of the mean skin friction and the Nusselt number can be correlated according to the surface-to-jet velocity ratios and the Reynolds numbers.
机译:使用单点封闭湍流模型研究了平面射流在热移动壁上的流场和传热。计算是通过有限体积法进行的。研究了平均速度分量,涡度,皮肤摩擦系数,努塞尔数和压力系数的演变。对于给定的喷嘴厚度8倍的撞击距离(H / e = 8),考虑了这种相互作用的两个参数:射流表面速度比和射流出口雷诺数。在给定的表面与射流速度比下,流场结构实际上与射流出口雷诺数无关。对于较弱的表面与射流速度比,可以观察到流场的轻微变化,而对于较高的速度比,则强烈驱动射流。目前的结果与文献中Rsj≤1的实验数据令人满意地比较。本文的目的是研究Rsj值较高(0values≤Rsj≤4)的现象。因此,可以根据表面喷射速度比和雷诺数将平均皮肤摩擦力和努塞尔数的变化相关联。

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