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Experimental Assessment of Metal Foam and Louvered Fins as Air-side Heat Transfer Enhancement for Miniaturized Condensers

机译:金属泡沫和百叶窗翅片作为小型冷凝器空气侧传热增强的实验评估

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摘要

An experimental investigation was conducted to evaluate and compare the thermal-hydraulic performances of crossflow microchannel condensers using louvered fins and metal foams as extended surfaces. Three copper foam surfaces with pore densities of 10 and 20 PPI and porosities of 89.3% and 94.7% were compared with three aluminum louvered fins with lengths of 27 and 32 mm (in the flow direction) and heights of 5 and 7.5 mm. The experiments were carried out in a closed loop wind-tunnel calorimeter equipped with a R-600a refrigeration loop. A condensing temperature of 45°C was used in all tests, with face velocities ranging from 2.1 to 7.7 m/s. A comparison based on the air-side thermal conductance and pumping power per unit volume showed that the louvered fin surfaces performed better than the metal foams for all conditions investigated.
机译:进行了实验研究,以评估和比较使用百叶窗式翅片和金属泡沫作为扩展表面的错流微通道冷凝器的热工水力性能。将三个孔密度分别为10和20 PPI,孔隙率分别为89.3%和94.7%的铜泡沫表面与三个长度分别为27和32 mm(沿流动方向),高度分别为5和7.5 mm的铝百叶窗式散热片进行了比较。实验是在装有R-600a制冷回路的闭环风洞热量计中进行的。在所有测试中,冷凝温度均为45°C,面速度范围为2.1至7.7 m / s。根据空气侧热导率和每单位体积的抽气功率进行的比较表明,在所有研究条件下,百叶窗式散热片表面的性能均优于金属泡沫。

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