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Dual-separated cooling channel performance evaluation for high-power led Pcb in automotive headlight

机译:汽车前灯大功率LED PCB的双分离冷却通道性能评估

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摘要

In this paper, thermal and hydraulic analysis of a dual-separated cooling channel was performed for the cooling applications of different automotive lighting systems. A single LED and multi-LEDs were considered to evaluate the thermal and hydraulic performance as well as the lighting properties of automotive headlights. The detailed hydraulic analysis was theoretically evaluated for developing laminar flow to get higher thermal performance with less pumping power. The theoretical and simulation results for the dual-separated cooling channel were compared and discussed. Unlike the constant properties were used in the current literature, thermal analysis with temperature-dependent properties was performed to estimate Nusselt number preciously for dual-separated cooling channels. The temperature measurements were also performed in the experimental study to compare the numerical results. The light output parameter of the LEDs depends on junction temperature, it was found that the increase in light output by using a dual-separated cooling channel was about 10% for all cases. Otherwise, higher junction temperature values lead to a reduction in operating efficiency. The top copper surface temperature drop was higher than 50%, and the junction temperature had been reduced by 36% to ensure the desired operating conditions of the automotive lighting system.
机译:在本文中,对不同汽车照明系统的冷却应用进行了双分离冷却通道的热和水力分析。考虑了单个LED和多LED,以评估热和液压性能以及汽车前灯的照明特性。理论上评估了详细的液压分析,用于开发层流,以获得更高的泵送功率热性能。比较和讨论双分离冷却通道的理论和仿真结果。与当前文献中使用的恒定性质不同,进行具有温度依赖性性质的热分析,以确保对双分离的冷却通道估计尤物的NUSERET。在实验研究中也进行了温度测量以比较数值结果。 LED的光输出参数取决于结温,发现所有情况下,使用双分离冷却通道的光输出增加约为10%。否则,更高的结温值导致操作效率的降低。顶部铜表面温度下降高于50%,结温已减少36%,以确保汽车照明系统的所需操作条件。

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