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Particle-in-Cell (PIC) Simulation of CW Industrial Heating Magnetron

机译:连续波工业加热磁控管的粒子模拟

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Modern CW industrial heating magnetrons are capable for producing as high as 300 kW of continuous-wave microwave power at frequencies around 900 MHz and are sold commercially [Wynn et al., 2004]. However, to utilize these magnetrons in some specific research and scientific applications being of interest for the Air Force, the necessary adaptation and redesign are required. It means that the detailed knowledge of principles of their operation and full understanding of how the changes of the design parameters affect their operational characteristics are necessary. We have developed and tested computer model of a 10-vane highpower strapped magnetron, which geometrical dimensions and design parameters are close to those of the California Tube Laboratory's commercially produced CWM-75/100L tube. The computer model is built by using the 3-D Improved Concurrent Electromagnetic Particle-inCell (ICEPIC) code. Simulations of the strapped magnetron operation are performed and the following operational characteristics are obtained during the simulation: frequency and mode of magnetron oscillations, output microwave power and efficiency of magnetron operation, anode current and anode-cathode voltage dynamics. The developed computer model of a nonrelativistic high-power strapped magnetron may be used by the industrial magnetron community for designing following generations of the CW industrial heating high-power magnetrons.
机译:现代的连续波工业加热磁控管能够在900 MHz左右的频率下产生高达300 kW的连续波微波功率,并在市场上出售[Wynn et al。,2004]。但是,为了在空军感兴趣的某些特定研究和科学应用中利用这些磁控管,需要进行必要的改装和重新设计。这意味着需要详细了解其工作原理,并充分了解设计参数的变化如何影响其工作特性。我们已经开发并测试了10叶片大功率带束磁控管的计算机模型,该模型的几何尺寸和设计参数与加利福尼亚管实验室的商业化生产的CWM-75 / 100L管相近。该计算机模型是通过使用3-D改进的并发电磁粒子内部单元(ICEPIC)代码建立的。对束缚的磁控管操作进行仿真,并在仿真过程中获得以下操作特性:磁控管振荡的频率和模式,输出微波功率和磁控管操作效率,阳极电流和阳极-阴极电压动态。非相对论性大功率带束磁控管的开发的计算机模型可被工业磁控管界用于设计下一代CW工业加热大功率磁控管。

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    Air Force Research Laboratory, Directed Energy Directorate 3550 Aberdeen Ave SE, Kirtland Air Force Base, NM 87117-5776;

    Air Force Research Laboratory, Directed Energy Directorate 3550 Aberdeen Ave SE, Kirtland Air Force Base, NM 87117-5776;

  • 收录信息 美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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