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首页> 外文期刊>International Journal of Heat and Mass Transfer >Design of novel geometries for microchannel heat sinks used for cooling diode lasers
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Design of novel geometries for microchannel heat sinks used for cooling diode lasers

机译:用于冷却二极管激光器的微通道散热器的新型几何设计

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摘要

High power diode laser bars require thermal management packages with high cooling efficiencies and long-term stability. At a constant size, the power output of the diode laser is being increased rapidly; therefore, an efficient heat removal strategy has become even more important. High efficiency microchannel heat sinks are usually used to remove heat from the system. In this study, the fluid flow and heat transfer of an existing diode laser micro-channel heat sink is numerically simulated. To reduce the maximum temperature and obtain a uniform temperature distribution across the diode laser, which leads to extended lifetimes, the simulations are repeated for three different channel geometries. The hydrodynamic and thermal behavior of the heat sinks are then compared. The results show that among all geometries, the sinusoidal structure provides the best thermal performance. Although the system pressure drop increases by 18%, this configuration increases the diode lifetime by 443%.
机译:高功率二极管激光棒需要具有高冷却效率和长期稳定性的热管理软件包。在恒定的尺寸下,二极管激光器的功率输出正在迅速增加。因此,有效的排热策略变得更加重要。高效的微通道散热器通常用于从系统中散热。在这项研究中,对现有的二极管激光器微通道散热器的流体流动和传热进行了数值模拟。为了降低最高温度并在二极管激光器上获得均匀的温度分布,从而延长使用寿命,对三种不同的通道几何结构重复了仿真。然后比较散热器的流体动力学和热行为。结果表明,在所有几何形状中,正弦结构提供了最佳的热性能。尽管系统压降增加了18%,但此配置将二极管寿命增加了443%。

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