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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A loop-heat-pipe heat sink with parallel condensers for high-power integrated LED chips
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A loop-heat-pipe heat sink with parallel condensers for high-power integrated LED chips

机译:带有并联电容器的环形热管散热器,用于大功率集成LED芯片

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摘要

In this paper, a systematic experimental study was carried out on a copper-water loop heat pipe (LHP) with dual parallel condensers, especially for high power LED illumination applications. The main highlights of this work include: (1) a general multi-purpose configuration of LED illumination device is proposed with replaceable optical lens; (2) a unique loop heat pipe with parallel condensers is proposed and tested for the first time. From the experimental measurements, at low heat loads, it is observed that the uneven-distribution of working fluid into different condensers exists; with increase of the heating loads, this uneven-distribution will disappear. Meanwhile, the obtained results from the experiments and the theoretical analysis show that different operation modes will result in different heat transfer performance of the loop heat pipe. For the present design, the loop heat pipe heat sink has a total thermal resistance ranging from 1.0 to 0.4℃/W (heating loads ranging from 30 W to 300 W) from the heating source to the ambient under natural convection situation. If implementing this LHP heat sink into the proposed LED illumination package, the measured thermal performance is superior to any conventional passive thermal management solutions in term of heat sink weight at the same temperature control level.
机译:在本文中,对带有双并联冷凝器的铜水环路热管(LHP)进行了系统的实验研究,特别是在大功率LED照明应用中。这项工作的主要亮点包括:(1)提出了具有可更换光学透镜的LED​​照明装置的通用配置; (2)首次提出并测试了带有并联冷凝器的独特环路热管。从实验测量中可以看出,在低热负荷下,工作流体向不同冷凝器的分布不均匀。随着加热负荷的增加,这种不均匀分布将消失。同时,从实验和理论分析中获得的结果表明,不同的工作模式将导致回路热管的传热性能不同。对于本设计,在自然对流情况下,从热源到周围环境,环路热管散热器的总热阻范围为1.0至0.4℃/ W(热负荷范围为30 W至300 W)。如果在建议的LED照明套件中实现此LHP散热器,则在相同温度控制水平下,在散热器重量方面,测得的热性能优于任何常规的被动式热管理解决方案。

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