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Flow and Temperature Fields in Cooling Devices with Embedded Serpentine Tubes

机译:嵌入式蛇形管冷却装置中的流场和温度场

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摘要

The turbulent flow (Re = 5124) and conjugate heat transfer in heat-sink designs of the tube-on-plate type are numerically investigated. The cooling configurations employ a serpentine tube partially (or fully) embedded inside the plate. Two-and four-pass configurations are investigated. A constant heat flux is applied at the bottom surface of the heat-sink plate. The SST k-ω model is used for the prediction of the turbulent flow and heat transfer. Two pairs of longitudinal vortices, as well as secondary flow separation, have been found to set in at the tube curved section. The combined secondary flow pattern enhances heat transfer at the tube sections over a considerable distance downstream of the 180° bends. In the last part of the analysis, the overall performance of the two configurations is compared using a number of evaluation criteria suitable for heat exchanging devices. The four-pass configuration with fully embedded tubing exhibits the best thermal (energetic) and exergetic performance.
机译:对板装式散热器设计中的湍流(Re = 5124)和共轭传热进行了数值研究。冷却配置采用部分(或完全)嵌入板内部的蛇形管。研究了两遍和四遍配置。恒定的热通量施加在散热板的底面。 SSTk-ω模型用于预测湍流和热传递。已经发现在管的弯曲部分设置了两对纵向涡旋以及二次流分离。组合的二次流模式在180°弯头下游相当大的距离内增强了管段的热传递。在分析的最后部分,使用许多适用于热交换设备的评估标准比较了两种配置的总体性能。具有完全嵌入式管道的四通配置显示出最佳的热(能量)和能量性能。

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