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首页> 外文期刊>Electric Power Applications, IET >Thermal analysis and experimental verification of a staggered-teeth transverse-flux permanent-magnet linear machine
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Thermal analysis and experimental verification of a staggered-teeth transverse-flux permanent-magnet linear machine

机译:交错齿横向磁通永磁直线电机的热分析和实验验证

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摘要

To overcome the inherent demerit of low power factor existing in transverse-flux permanent-magnet (TFPM) machines, a tubular staggered-teeth TFPM linear machine is presented here. Linear alternator integrated with free-piston Stirling engines could offer a great potential in a wide variety of applications ranging from solar energy generation to space power supply. The thermal behaviour of the machine is studied using a three-terminal lumped-parameter thermal network (LPTN) to solve the problem of temperature overestimation of the traditional LPTN. The determination of thermal resistances and thermal parameters are introduced in detail. The temperatures of various components of the machine under different load conditions are calculated by both the three-terminal LPTN model and the numerical thermal model. Sensitivity analysis is carried out to study the influence of critical thermal parameters on the temperature rise of the machine. On this basis, the effectiveness of the forced air cooling is investigated. A prototype is fabricated and temperature experiment indicates that there is a good agreement between measurement and calculation.
机译:为了克服横向磁通永磁体(TFPM)机器中存在的低功率因数的固有缺点,此处介绍一种管状交错齿TFPM线性机器。集成有自由活塞斯特林发动机的线性交流发电机可以在从太阳能发电到空间电源的各种应用中提供巨大的潜力。使用三端集总参数热网络(LPTN)研究了机器的热性能,以解决传统LPTN的温度过高问题。详细介绍了热阻和热参数的确定。通过三端LPTN模型和数值热模型都可以计算出在不同负载条件下机器各个组件的温度。进行灵敏度分析以研究关键的热参数对机器温升的影响。在此基础上,研究了强制风冷的有效性。制作了原型,温度实验表明测量和计算之间有很好的一致性。

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