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THERMAL-FLOW COUPLING SIMULATION ANALYSIS OF SPIRAL CHANNEL WATER COOLED RADIATOR FOR HIGH POWER THYRISTOR

机译:高功率晶闸管螺旋通道水冷散热器的热流耦合仿真分析

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High power thyristor is the core switching device of pulse power source, which is an important component of electromagnetic launch (EML). So the reliability of high power thyristor directly affects the safe and reliable operation of EML. Semiconductor theoretical and experimental studies show that the electrical characteristics of thyristor are directly related to the change of junction temperature. In this paper, a spiral flow channel water-cooled radiator applied to cooling thyristor is analyzed to study its flow and thermal diffusion characteristics. And, its performance under different inlet flow rate, inlet temperature and heating power are compared. The results show that countercurrent design of adjacent channel is effective to maintain the uniformity of temperature distribution; and compared with inlet temperature or heating power, inlet flow rate has a greater impact on the performance of the radiator.
机译:高功率晶闸管是脉冲电源的核心开关装置,是电磁发射(EML)的重要组成部分。因此,高功率晶闸管的可靠性直接影响EML的安全可靠操作。半导体理论和实验研究表明,晶闸管的电气特性与结温的变化直接相关。本文分析了施加到冷却晶闸管的螺旋流动通道水冷散热器,研究其流动和热扩散特性。而且,比较其在不同入口流速,入口温度和加热功率下的性能。结果表明,相邻通道的逆流设计有效地保持温度分布的均匀性;与入口温度或加热功率相比,入口流量对散热器的性能产生了更大的影响。

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