Micro-pin-fin cooler mounted on the power chip enables the heat removal to meet modern microsystem requirement. Carbon nanotubes (CNTs) have been proven as a potential material for micro-coolers due to the superior ...Micro-pin-fin cooler mounted on the power chip enables the heat removal to meet modern microsystem requirement. Carbon nanotubes (CNTs) have been proven as a potential material for micro-coolers due to the superior thermal conductivity, good mechanical property and so forth, and there appear various applications of CNTs in the micro-cooler technology. In the present paper, an analysis of the thermal and hydraulic characteristics of the micro-pin-fin heat sink was conducted, where air was used as the cooling medium and an impinging jet was introduced to enhance the heat transfer. Three-dimension computational fluid dynamics (CFD) simulations were carried out for micro-pin-fin coolers with various parameters, including the pin-fin size and pattern as well as the jet velocity and nozzle diameter. The flow field and thermal properties of the. micro-pin-fin heat sink were obtained, and the heat removal efficiency was evaluated.展开更多
对采用5层叠焊的微通道无氧铜热沉冷却的巴条激光器进行了流体动力学(CFD)分析。建立了条宽10 mm、腔长1.5 mm巴条芯片的流固耦合共轭传热模型,得到了不同流量水冷下激光器的热阻和压力损失曲线。分析了300 m L/min水流时,激光器的温度...对采用5层叠焊的微通道无氧铜热沉冷却的巴条激光器进行了流体动力学(CFD)分析。建立了条宽10 mm、腔长1.5 mm巴条芯片的流固耦合共轭传热模型,得到了不同流量水冷下激光器的热阻和压力损失曲线。分析了300 m L/min水流时,激光器的温度分布和冷却水的流动性能。实验条件下,测试了该微通道热沉封装的808 nm巴条激光器的热阻和压力损失。数值计算和实验测试所得的结果一致,在300 m L/min水流下,巴条热阻为0.38℃/W,在温度不高于70℃时可满足连续模式下90 W的散热要求。展开更多
基金supported by the National Natural Science Foundation of China(Grant No.10702037)the National High-Technology Research and Development Program(Grant No.2008AA04Z301)
文摘Micro-pin-fin cooler mounted on the power chip enables the heat removal to meet modern microsystem requirement. Carbon nanotubes (CNTs) have been proven as a potential material for micro-coolers due to the superior thermal conductivity, good mechanical property and so forth, and there appear various applications of CNTs in the micro-cooler technology. In the present paper, an analysis of the thermal and hydraulic characteristics of the micro-pin-fin heat sink was conducted, where air was used as the cooling medium and an impinging jet was introduced to enhance the heat transfer. Three-dimension computational fluid dynamics (CFD) simulations were carried out for micro-pin-fin coolers with various parameters, including the pin-fin size and pattern as well as the jet velocity and nozzle diameter. The flow field and thermal properties of the. micro-pin-fin heat sink were obtained, and the heat removal efficiency was evaluated.
文摘对采用5层叠焊的微通道无氧铜热沉冷却的巴条激光器进行了流体动力学(CFD)分析。建立了条宽10 mm、腔长1.5 mm巴条芯片的流固耦合共轭传热模型,得到了不同流量水冷下激光器的热阻和压力损失曲线。分析了300 m L/min水流时,激光器的温度分布和冷却水的流动性能。实验条件下,测试了该微通道热沉封装的808 nm巴条激光器的热阻和压力损失。数值计算和实验测试所得的结果一致,在300 m L/min水流下,巴条热阻为0.38℃/W,在温度不高于70℃时可满足连续模式下90 W的散热要求。