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Method for predicting junction temperature distribution in a high-power laser diode bar

机译:大功率激光二极管条中结温分布的预测方法

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A hybrid experimentalumerical method is proposed for predicting the junction temperature distribution in a high-power laser diode (LD) bar with multiple emitters. A commercial water-cooled LD bar with multiple emitters is used to illustrate and validate the proposed method. A unique experimental setup is developed and implemented first to measure the average junction temperatures of the LD bar emitters. After measuring the heat dissipation of the LD bar, the effective heat transfer coefficient of the cooling system is determined inversely from the numerical simulation using the measured average junction temperature and the heat dissipation. The characterized heat dissipation and effective heat transfer coefficient are used to predict the junction temperature distribution over the LD bar numerically under high operating currents. The results are presented in conjunction with the wall-plug efficiency and the center wavelength shift. (C) 2016 Optical Society of America
机译:提出了一种混合实验/数值方法来预测具有多个发射器的高功率激光二极管(LD)棒中的结温分布。具有多个发射器的商用水冷LD棒用于说明和验证所提出的方法。首先开发并实施了一种独特的实验装置,以测量LD条形发射极的平均结温。在测量了LD条的散热量之后,使用测得的平均结温和散热量,通过数值模拟反演确定冷却系统的有效传热系数。特征的散热和有效的传热系数用于在高工作电流下以数值方式预测LD条上的结温分布。结合墙塞效率和中心波长偏移来给出结果。 (C)2016美国眼镜学会

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