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Experimental study of the performance of cutting copper fiber oriented sintered heat sinks for the water cooling of LEDs

机译:切削铜纤维烧结散热器性能的实验研究,用于LED水冷

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摘要

LED light sources have been gradually applied in plant factories, but the heat dissipation of LED leads to high energy consumption. Considering the water irrigation systems of plant factories, a cutting copper fiber oriented sintered heat sink (CCFOSHS) is proposed for water cooling of LEDs. The heat transfer and flow performances of CCFOSHS were investigated by experiments, and compared with cutting copper fiber random sintered heat sink (CCFRSHS) and traditional small channel heat sink. Influences of porosity and equivalent diameter of fibers on heat transfer and flow performances of CCFOSHS are analyzed. Results demonstrate that compared to CCFRSHS, heat transfer performances of CCFOSHS are slightly worse, but the direction of fiber causes a lower pressure drop and CCFOSHS has better comprehensive heat transfer performance. With the decrease of porosity, heat transfer performances of CCFOSHS are enhanced slightly, but pressure drops increase distinctly. Heat transfer performances of CCFOSHS are not sensitive to the equivalent diameter of fibers. The smaller equivalent diameter of the fibers leads to a higher pressure drop. Especially when the equivalent diameter of fibers is 195.12 mu m, CCFOSHS with 80% porosity, has better temperature uniformity.
机译:LED光源已逐渐应用于植物厂,但LED的散热导致高能耗。考虑到植物厂的水灌溉系统,提出了一种切割铜纤维取向烧结散热器(CCFOSHS),用于LED的水冷却。通过实验研究了CCFOSH的热传递和流动性能,并与切削铜纤维随机烧结散热器(CCFRSHS)和传统的小沟道散热器进行比较。分析了纤维孔隙率和等效直径对CCOSHS的热传递和流动性能的影响。结果表明,与CCFRSH相比,CCFOSH的热传递性能略微差,但纤维方向导致较低的压降,CCFOSHS具有更好的综合传热性能。随着孔隙率的降低,CCFOSH的热传递性能略微增强,但压降明显增加。 CCOSHS的热传递性能对纤维的等同直径不敏感。纤维的较小等效直径导致更高的压降。特别是当纤维的等效直径为195.12μm时,具有80%孔隙率的CCOSHS具有更好的温度均匀性。

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