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CYLINDRICAL PIN-FIN FAN-SINK HEAT TRANSFER AND PRESSURE DROP CORRELATIONS

机译:圆柱形针翅式风扇沉降热传递和压降相关性

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New pressure drop/flow rate measurements coupled with a previously reported heat transfer database have resulted in new friction factor and heat transfer correlation equations for fan-driven impinging flow through square arrays of cylindrical cross-section pin-fins. The correlation equations include the effect of coolant flow rate, pin-fin density and pin-fin height. A comparison with a similar jet-driven impingement flow configuration shows that the heat transfer/pressure drop characteristics of the two flow configurations are fundamentally different. When the same arrays are compared at the same coolant flow rate, the fan-driven configuration will result in a lower pressure drop and heat transfer rate. An analysis shows that different optimal pin-fin configurations (fin height and fin density) result, depending on the design criteria imposed on the flow.
机译:通过先前报告的传热数据库耦合的新压降/流量测量导致通过圆柱形横截面的方形阵列的风扇驱动撞击流动的新的摩擦因子和传热相关方程。相关方程包括冷却剂流速,尖鳍密度和尖鳍高度的效果。与类似的喷射驱动冲击流配置的比较表明,两个流动配置的传热/压降特性是根本的。当以相同的冷却剂流速进行比较相同的阵列时,风扇驱动的配置将导致较低的压降和传热速率。分析表明,不同的最佳销钉配置(FIN高度和翅片密度)结果,这取决于对流的设计标准。

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