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Cooling strategy for LED filament bulb utilizing thermal radiation cooling and open slots enhancing thermal convection

机译:利用热辐射冷却和开槽增强热对流的LED灯丝灯泡的冷却策略

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As a novel replacement of conventional light sources, LED filament bulb has gained popularity recently due to its long lifetime, low cost and high energy efficiency. However, the bottleneck in LED filament development is thermal management of the whole bulb and consequential degradation of light output performance. The potential cooling strategies include passive cooling and active cooling. Compared with passive cooling methods, active cooling ones are more costly, space-consuming, heavier and do not apply to the case of filament bulb. Thus, passive cooling such as thermal conductive phosphor-silicon composite and thermal radiation coating wrapped around the filaments can be adopted to boost the thermal conduction and radiation into the environment. Notice that the temperature distribution within phosphor layer is non-uniform, thermal radiation coating can make phosphor temperature more uniform as well as reduce the risk of thermal quenching and hotspot. Here, the effect of our self-developed thermal radiation coatings with different emissivity are compared and investigated. What's more, open slots or holes on the bulb can be considered to enhance the thermal convection of the filament. According to our simulation, the junction temperature will decrease with filament thickness. This is because the outer surface of filament for both thermal convection and radiation is increased, which stimulates the total heat transfer. With this optimized passive cooling strategy, thermal issue of LED filament bulb can be mitigated largely and cost-performance ratio is at a relatively low level.
机译:作为传统光源的新颖替代品,LED灯丝灯泡由于其使用寿命长,成本低和能效高而近来得到普及。但是,LED灯丝开发的瓶颈是整个灯泡的热管理以及随之而来的光输出性能下降。潜在的冷却策略包括被动冷却和主动冷却。与被动冷却方法相比,主动冷却方法更昂贵,更占用空间,更重,并且不适用于白炽灯泡的情况。因此,可以采用诸如导热磷-硅复合物和缠绕在细丝周围的热辐射涂层之类的无源冷却来增强向环境的热传导和辐射。请注意,磷光体层内的温度分布不均匀,热辐射涂层可以使磷光体温度更加均匀,并降低热淬火和热点的风险。在这里,我们比较并研究了我们自己开发的具有不同发射率的热辐射涂层的效果。此外,可以考虑在灯泡上开一些槽或孔,以增强灯丝的热对流。根据我们的仿真,结温将随着灯丝厚度的降低而降低。这是因为用于热对流和辐射的灯丝外表面增加了,这刺激了总的热传递。通过这种优化的被动冷却策略,可以大大减轻LED灯丝灯泡的散热问题,并且成本/性能比处于相对较低的水平。

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