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Numerical study on flow and heat transfer characteristics of air-jet cooling system

机译:空气喷射冷却系统流量和传热特性的数值研究

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The present study aims to numerically analyze the cooling characteristics of the air-jet array in designing more efficient air-cooling system. Heat transfer and flow characteristics are also examined under different operating conditions and air-jet arrangements. The commercial CFD program (FLUENT V. 17) is used for the designed configuration where 10 specimens are cooled by the air-jet arrangement. From the result, it is found that the inner jet arrangement can make the cooling performance higher because of substantial interaction between them in the flow direction. When inner jets are installed for cooling, there is a fluid mixing zone before the specimen by short jet-to-jet distance, leading to a decrease in heat transfer. Also, the fluid mixing zones are concentrated near to the specimen because of similar flow rate between outer and inner jets. Therefore, we suggest the appropriate configuration showing the best cooling efficiency when considered the air temperature, the heat transfer coefficient, and the flow usage. The number of nozzles of inner jets is 44, but highvelocity jet is used for preventing flow mixing among the inner jets. Consequently, cooling with the outer jets effectively occurs around the specimen. This result would be helpful in determining the jet velocity and its configuration between inner and outer jets that are essential for multiple specimens cooling.
机译:本研究旨在在设计更有效的空气冷却系统时数值分析空气喷射阵列的冷却特性。还在不同的操作条件和空气喷射装置下检查传热和流动特性。商业CFD程序(Fluent V.17)用于设计的配置,其中10个样本通过空气喷射装置冷却。从结果中,发现内射流装置可以使冷却性能更高,因为它们在流动方向之间的基本相互作用。当安装内喷射以冷却时,通过短的喷射距离,在样品之前存在流体混合区,导致热传递减少。而且,由于外部和内喷射之间的流速类似的流速,流体混合区浓缩到样本。因此,我们建议在考虑空气温度,传热系数和流量时显示最佳冷却效率的适当配置。内喷射器的喷嘴数是44,但是高透档喷射用于防止内喷射中的流动混合。因此,用外喷射的冷却有效地发生在样本周围。该结果对于确定对多个样品冷却至关重要的内部和外喷射之间的喷射速度及其构造是有帮助的。

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