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高功率板条放大器冷却系统模拟及优化设计 被引量:7
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作者 王建磊 李磊 +3 位作者 施翔春 尹亮 马秀华 朱小磊 《中国激光》 EI CAS CSCD 北大核心 2010年第6期1553-1559,共7页
基于传导冷却端面抽运板条激光放大器结构,设计矩形槽微通道水冷热沉作为放大器冷却系统,借助有限元分析(FEA),对微通道热沉尺寸进行了优化,得出槽宽占空比为0.57时热沉冷却性能最好。结合分析结果,设计一槽宽0.4 mm,肋宽0.35 mm的微通... 基于传导冷却端面抽运板条激光放大器结构,设计矩形槽微通道水冷热沉作为放大器冷却系统,借助有限元分析(FEA),对微通道热沉尺寸进行了优化,得出槽宽占空比为0.57时热沉冷却性能最好。结合分析结果,设计一槽宽0.4 mm,肋宽0.35 mm的微通道热沉进行实验验证,将实验与模拟结果进行对比拟合得到热沉传热系数与水流速的关系曲线。进一步模拟了激光板条在热沉作用下温度分布情况,得到在水流速很低的情况下板条冷却面具有很小热阻的结果。 展开更多
关键词 板条激光器 冷却系统 微通道水冷 有限元分析
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Optimization of Dimples in Microchannel Heat Sink with Impinging Jets Part A: Mathematical Model and the Influence of Dimple Radius 被引量:7
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作者 MING Tingzhen CAI Cunjin +2 位作者 YANG Wei SHEN Wenqing GAN Ting 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第3期195-202,共8页
With increasing heat fluxes caused by electronic components, dimples have attracted wide attention by researchers and have been applied to microchannel heat sink in modem advanced cooling technologies. In this work, t... With increasing heat fluxes caused by electronic components, dimples have attracted wide attention by researchers and have been applied to microchannel heat sink in modem advanced cooling technologies. In this work, the combination of dimples, impinging jets and microchannel heat sink was proposed to improve the heat transfer performance on a cooling surface with a constant heat flux 500 W/cm2. A mathematical model was ad- vanced for numerically analyzing the fluid flow and heat transfer characteristics of a microchannel heat sink with impinging jets and dimples (MHSIJD), and the velocity distribution, pressure drop, and thermal performance of MI-ISIJD were analyzed by varying the radii of dimples. The results showed that the combination of dimples and MHSIJ can achieve excellent heat transfer performance; for the MHSIJD model in this work, the maximum and average temperatures can be as low as 320 K and 305 K, respectively when mass flow rate is 30 g/s; when dimple radius is larger than 0.195 mm, both the heat transfer coefficient and the overall performance h/AP of MHSIJD are higher than those of MHSIJ. 展开更多
关键词 Microchannel with Impinging Jet DIMPLE Heat Transfer Enhancement Thermal Resistance Numerical Simulation
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