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DIRECT LIQUID COOLING OF HIGH FLUX LED SYSTEMS: HOT SPOT ABATEMENT

机译:高通量LED系统的直接液体冷却:热点消除

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With the recent advances in wide band gap device technology, solid-state lighting (SSL) has become favorable for many lighting applications due to energy savings, long life, green nature for environment, and exceptional color performance. Light emitting diodes (LED) as SSL devices have recently offered unique advantages for a wide range of commercial and residential applications. However, LED operation is strictly limited by temperature as its preferred chip junction temperature is below 100 °C. This is very similar to advanced electronics components with continuously increasing heat fluxes due to the expanding microprocessor power dissipation coupled with reduction in feature sizes. While in some of the applications standard cooling techniques cannot achieve an effective cooling performance due to physical limitations or poor heat transfer capabilities, development of novel cooling techniques is necessary. The emergence of LED hot spots has also turned attention to the cooling with dielectric liquids intimately in contact with the heat and photon dissipating surfaces, where elevated LED temperatures will adversely affect light extraction and reliability. In the interest of highly effective heat removal from LEDs with direct liquid cooling, the current paper starts with explaining the increasing thermal problems in electronics and also in lighting technologies followed by a brief overview of the state of the art for liquid cooling technologies. Then, attention will be turned into thermal consideration of approximately a 60W replacement LED light engine. A conjugate CFD model is deployed to determine local hot spots and to optimize the thermal resistance by varying multiple design parameters, boundary conditions, and the type of fluid. Detailed system level simulations also point out possible abatement techniques for local hot spots while keeping light extraction at maximum.
机译:随着宽带隙器件技术的最新发展,固态照明(SSL)由于节能,寿命长,环境绿色和出色的色彩表现而成为许多照明应用的理想选择。作为SSL器件的发光二极管(LED)最近为广泛的商业和住宅应用提供了独特的优势。但是,LED的工作受到温度的严格限制,因为其首选的芯片结温低于100°C。这与先进的电子元件非常相似,由于微处理器功耗的不断增加以及特征尺寸的减小,热通量不断增加。虽然在某些应用中,由于物理限制或传热能力差,标准的冷却技术无法达到有效的冷却性能,但有必要开发新型的冷却技术。 LED热点的出现也将注意力转移到与介电液体紧密接触散热和光子耗散表面的冷却上,其中升高的LED温度将不利地影响光的提取和可靠性。为了通过直接液体冷却从LED上高效散热,目前的文章首先解释了电子技术和照明技术中日益严重的热问题,然后简要概述了液体冷却技术的最新发展。然后,将注意力转移到大约60W替换LED光引擎的散热考虑上。通过改变多个设计参数,边界条件和流体类型,使用共轭CFD模型确定局部热点并优化热阻。详细的系统级仿真还指出了在保持最大光提取量的同时减少局部热点的技术。

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