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W-band gyro-BWO with a four-stage depressed collector

机译:带四级压陷集电极的W波段陀螺仪BWO

摘要

An energy recovery system using a four-stage depressed collector was simulated and designed to improve the overall efficiency of the W-band gyrotron backward wave oscillator (gyro-BWO) at the University of Strathclyde. The spent beam information was exported from the simulation of the gyro-BWO using the 3D PIC code MAGIC. The geometry of the depressed collector was optimized using a genetic algorithm to achieve the optimum overall recovery efficiency for specific parameters of the spent beam. Secondary electron emissions and their effects on the recovery efficiency and the backstreaming of the electrons from the collector region were simulated. The heat power distribution on the electrodes was also simulated to avoid the “hot spot”.
机译:模拟并设计了使用四级凹陷式集电极的能量回收系统,以提高Strathclyde大学的W波段回旋回波振荡器(gyro-BWO)的整体效率。使用3D PIC代码MAGIC从陀螺-BWO的仿真中导出用过的光束信息。使用遗传算法对凹陷收集器的几何形状进行了优化,以针对废射束的特定参数实现最佳的总体回收效率。模拟了二次电子的发射及其对回收效率和电子从集电极区回流的影响。还模拟了电极上的热功率分布,以避免“热点”。

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