首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Effect of crossflow regulation by varying jet diameters in streamwise direction on jet impingement heat transfer under maximum crossflow condition
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Effect of crossflow regulation by varying jet diameters in streamwise direction on jet impingement heat transfer under maximum crossflow condition

机译:在最大横向条件下流动射流直径变化射流直径对射流直径的影响

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Jet impingement heat transfer has been studied numerically for a maximum crossflow condition using a 3. 9 array of jets. Five-hole configurations have been studied for jet average Reynolds numbers ranging from 10,000 to 20,000. Crossflow has been mitigated by varying the jet diameters in the streamwise direction to reduce the impact of crossflow on downstream jet impingement. The design criteria for all five configurations were to keep the average of the jet diameters equal to the constant jet diameter configuration (baseline). It has been found that the configuration with increasing and then decreasing jet diameters provided higher levels of heat transfer with more uniform cooling when compared to the traditional constant diameter configuration and other configurations.
机译:使用3. 9个喷射器,数控进行了最大的十字流量条件进行了测量的射流冲击传热。 已经研究了五孔配置,用于射流平均雷诺数,范围为10,000至20,000。 通过在流动方向上改变射流直径来减轻交叉流动,以减少横流对下游喷射冲击的影响。 所有五种配置的设计标准是保持射流直径的平均值等于恒定喷射直径配置(基线)。 已经发现,与传统的恒定直径配置和其他配置相比,随着增加和射流直径的增加,射流直径具有更高水平的热传递。

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