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Liquid cooling system for a high power light emitting diode of an automotive headlamp and its effect on light intensity

机译:用于汽车前照灯的高功率发光二极管的液体冷却系统及其对光强度的影响

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摘要

The automotive lighting industry is adopting compact cooling systems for high power light emitting diodes (HPLED) to overcome the heating issues in headlamps. Today, nano-particle based fluids are becoming popular as coolants as it is more effective than conventional coolant like water. The present work uses nano-fluid which is prepared using 100 percent ethylene glycol with 35 nm spherical shaped alumina nanoparticle with 1 percent volume concentration for HPLED cooling system. Using a custom made copper tube heat exchanger, experiments were conducted to study the performance of the cooling system using nano coolant and double distilled pure water as second coolant and results were compared. A popular Indian SUV headlamp that uses a halogen bulb was chosen for the study as it has space to accommodate the cooling system. Experiments were conducted by operating the HPLED at its maximum power and by varying the coolant flow rate. The performance of headlamp is studied by means of the light intensity measured at 49 test points on the floor surface and temperature measured at various points like LED junction and heat exchanger input and output. The junction temperature influences the light intensity of the LED. Lesser the junction temperature more will be the light intensity. It was found from the results that the junction temperature reduced by 26 percent with the help of the nano-fluid based cooling system. It is also found that the light intensity improved by 30 percent when the nano coolant was circulated at 0.3 m/s.
机译:汽车照明工业采用紧凑的冷却系统,用于高功率发光二极管(刷新),以克服前照灯中的加热问题。如今,纳米粒子的流体作为冷却剂的流行,因为它比常规冷却剂如水更有效。本作采用纳米流体,使用100%乙二醇用35nm球形氧化铝纳米粒子制备,具有1%的浸湿冷却系统的体积浓度。使用定制铜管热交换器,进行实验以研究使用纳米冷却剂的冷却系统的性能,并将双蒸馏水作为第二冷却剂进行比较。选择使用卤素灯泡的受欢迎的印度SUV前照灯,因为它具有适应冷却系统的空间。通过在其最大功率下操作倍率并且通过改变冷却剂流速来进行实验。通过在地板表面上的49个测试点测量的光强度和在像LED结和热交换器输入和输出的各个点测量的温度下测量的光强度,研究了前照灯的性能。结温影响LED的光强度。较小的结温更多将是光强度。借助于纳米流体的冷却系统,连接温度从结果发现了26%。还发现当纳米冷却剂在0.3m / s时循环时,光强度提高了30%。

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