首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >A FLOW VISUALIZATION STUDY OF THE JET DYNAMICS IN A ROUND JET IMPINGING ON A FOAMED ALUMINUM POROUS MEDIA
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A FLOW VISUALIZATION STUDY OF THE JET DYNAMICS IN A ROUND JET IMPINGING ON A FOAMED ALUMINUM POROUS MEDIA

机译:泡沫铝多孔介质上圆射流射流动力学的可视化研究

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The high surface area of foamed metals makes them an attractive choice for impingement heat sinks. If the jet can effectively penetrate the foam, the high surface area will lead to enhanced thermal performance. However, if the jet fails to effectively penetrate the foam, the surface enhancement effect will be reduced. Previous studies have suggested that for high density foams, the jet does not effectively penetrate the foam and under certain flow conditions may in fact deflect off the foam.In this study, the flow dynamics of round jets impinging on both aluminum foams and solid cubes are studied using smoke wire visualization to identify the effects of Reynolds number and jet exit to surface spacing. The differences in the impinging jet dynamics between the foams and the solid cubes are identified.It is found that the penetration of the impinging flow into the porous media is significantly affected by permeability. As permeability decreases, flow deflection off the impact surface of the foam increases, approaching the fluid dynamics behavior of impact on a solid cube. The jet-exit-to-surface spacing and Reynolds number are also found to significantly affect the flow dynamics.
机译:泡沫金属的高表面积使其成为冲击式散热器的有吸引力的选择。如果射流可以有效地渗透泡沫,则高表面积将导致增强的热性能。然而,如果射流不能有效地渗透泡沫,则表面增强效果将降低。先前的研究表明,对于高密度泡沫,射流不能有效地渗透泡沫,并且在某些流动条件下实际上可能会使泡沫偏转。 在这项研究中,使用烟丝可视化技术研究了圆形射流撞击铝泡沫和固体立方体的流动动力学,以确定雷诺数和射流出口对表面间距的影响。确定了泡沫和固体立方体之间撞击射流动力学的差异。 已经发现,冲击流到多孔介质中的渗透受到渗透性的显着影响。随着渗透率降低,离开泡沫冲击表面的流动偏斜增加,接近冲击作用在固体立方体上的流体动力学行为。还发现喷射出口到表面的间距和雷诺数显着影响流动动力学。

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