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Computational parametric study of an impinging jet in a cross-flow configuration for electronics cooling applications

机译:用于电子冷却应用的横流配置中的冲击射流的计算参数研究

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A parametric study based on design of experiments (DoE) techniques was carried out by computational simulation in order to evaluate the effect that design parameters have on heat transfer and pressure loss of an impinging jet in a cross-flow configuration. The main effects of each parameter and the interactions between parameters were analyzed in detail through the Response Surface Methodology (RSM). Additionally, the potential of the impinging jet in a cross-flow configuration was assessed by calculating the optimal values of the parameters and comparing the cooling efficiency of the resulting configuration with the efficiency of the conventional cross-flow configuration. It was found that the degree to which the average heat transfer coefficient is enhanced as the result of adding an impinging jet depends on the height of the cooled component. Specifically, it was found that the higher the component, the more significant the enhancement.
机译:通过计算仿真,进行了基于实验设计(DoE)技术的参数研究,以评估设计参数对错流配置中射流的传热和压力损失的影响。通过响应表面方法(RSM)详细分析了每个参数的主要作用以及参数之间的相互作用。另外,通过计算参数的最佳值并将所得结构的冷却效率与常规横流结构的效率进行比较,可以评估横流结构中撞击射流的电势。已经发现,由于增加了冲击射流而使平均传热系数提高的程度取决于冷却部件的高度。具体而言,发现组分越高,增强越显着。

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