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Experimental and Computational Analysis of Heat Transfer by a Turbulent Air Jet Impingement on a Flat Surface

机译:平坦表面上湍流空气喷射冲击的热传递实验和计算分析

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Jet impingement is an active method for the heat transfer enhancement and is in practice in a big way in industries where focussed heating or cooling has to be achieved. In the present experimental work, the parameters like Reynolds number and the non-dimensionalized jet to plate spacing (H/D) have been varied to study the variation in the radial distribution of Nusselt number over the Aluminum flat plate. The air jet diameter of 15 mm is used for the analysis. Reynolds number ranging 4000 to 10,000 and H/D is 2 and 4. The experimental results show close agreements with that of the obtained from the numerical results which are calculated using a commercial CFD code ANSYS FLUENT. After through model testing SST k-ω turbulence model is employed to arrive at the results and conclusion. It is concluded that increasing Reynolds number and decreasing the H/D increases the Nusselt number.
机译:喷射冲击是传热增强的活跃方法,并且在实践中,在必须实现聚焦加热或冷却的行业中的重要方法。 在本实验工作中,已经改变了雷诺数和非尺寸化射流(H / D)的参数,以研究铝平板上的衬底数量径向分布的变化。 空气喷射直径为15mm用于分析。 Reynolds编号范围为4000至10,000,h / d为2和4.实验结果表明,与使用商业CFD代码ANSYS流畅计算的数值结果的数值结果表明恰当的协议。 通过模型测试之后,SST K-ω湍流模型用于达到结果和结论。 结论是,增加雷诺数和降低H / D增加了营养数。

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