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Optimization of the Heat Transfer in Multi-kW-Fiber-Lasers

机译:多千瓦光纤激光器的传热优化

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摘要

An analytical approach for the thermal design of high-power-fiber laser components is presented. The modular structure of the model allows adaption to different fiber designs and gives insight into the governing parameters of the heat transport. Furthermore the analysis and analytic optimization of interacting effects of groups of layers is possible with this method and is presented in this work. A previously suggested cooling scheme for a heat load of 120 W/m is analyzed. Applying the analysis to air-clad-fibers is leading to results differing up 40 % from previous works. The FEM-analysis of the cooling of splices shows that the cooling scheme suggested for the active fiber is not sufficient for splices for a fiber resonator in the kW-range. Using a one-dimensional model it can be shown that if a small percentage of loss in the splice is absorbed inside the recoat, it is necessary to reduce the recoat thickness.
机译:提出了一种用于高功率光纤激光器组件热设计的分析方法。该模型的模块化结构允许适应不同的光纤设计,并深入了解热传输的控制参数。此外,使用此方法可以进行层组之间的相互作用效果的分析和分析优化,并在本工作中进行介绍。分析了先前建议的120 W / m热负荷的冷却方案。将分析应用于空气包覆纤维可以使结果与以前的工作相差40%。接头冷却的有限元分析表明,为有源光纤建议的冷却方案不足以用于kW范围内光纤谐振器的接头。使用一维模型可以显示出,如果接头中的一小部分损耗被吸收到重涂剂内部,则有必要减小重涂剂的厚度。

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