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首页> 外文期刊>International Journal of Heat and Mass Transfer >Impingement of an impact jet onto a spherical cavity. Flow structure and heat transfer
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Impingement of an impact jet onto a spherical cavity. Flow structure and heat transfer

机译:冲击射流撞击到球形腔上。流动结构与传热

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An experimental study of flow characteristics and heat transfer for jet impingement cooling of obstacles in the form of single spherical cavities is reported. The distributions of flow velocities between the nozzle and the obstacle, and also the fields of pressure and heat-transfer coefficients inside the cavity were measured. It is found that, at a value of depth the cavity generates the large-scale toroidal vortex, essentially influencing on the heat transfer. The cavity flow becomes unstable, exhibiting low-frequency pulsations of local heat fluxes. In the examined ranges of Reynolds numbers, Re = (1.2-5.8)10~4, and cavity depths (equal to or smaller than 0.5D_c) the local heat-transfer intensity in the cavity is lower than that on a flat obstacle; yet, this reduction is almost fully compensated by increased area of the heat-exchanging surface.
机译:报道了对单个球形腔体形式的障碍物进行射流冲击冷却的流动特性和传热的实验研究。测量喷嘴和障碍物之间的流速分布,以及腔体内压力和传热系数的场。已发现,在深度值处,空腔会产生大规模的环形涡旋,实质上会影响传热。空腔流动变得不稳定,表现出局部热通量的低频脉动。在雷诺数的检查范围内,Re =(1.2-5.8)10〜4,且腔体深度(等于或小于0.5D_c)时,腔体内的局部传热强度低于平坦障碍物上的局部传热强度。然而,这种减少几乎可以通过增加热交换表面的面积来完全补偿。

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