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One-Dimensional Semianalytical Model for Optimizing the Standing-Wave Direct Energy Converter

机译:优化驻波直接能量转换器的一维半解析模型

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A method to optimize the spacing of decelerator electrodes in the standing-wave direct energy converter has been developed. The standing-wave direct energy converter is introduced as a simplified version of, and possible milestone toward, the traveling-wave direct energy converter to facilitate a general understanding of the physics of the traveling-wave direct energy converter, as well as to simplify the modeling and results. The standing-wave direct energy converter may also stand alone as an alternative to the traveling-wave direct energy converter. The method developed takes advantage of analytical simplifications in capacitance calculations to avoid the use of a computational mesh, thereby modeling the standing-wave direct energy converter system with low simulation runtimes while using explicit numerical methods to advance groups of ions, referred to as ion bunches. The optimization scheme returns the optimal electrode spacing and circuit resistance value given the inputs of the initial ion energy, ion bunch density, operating frequency, decelerator electrode radius, and number of decelerator electrodes. The method approximates the ion bunches as point charges on the axis of the device, and the limitations of this approximation are considered. The expansion of the ion bunch is treated analytically and imposes a limiting tradeoff between the density of the ion bunches and the duration of ion deceleration. Performance trends and other tradeoffs are also presented.
机译:已经开发出一种优化驻波直接能量转换器中减速器电极间距的方法。引入驻波直接能量转换器是行波直接能量转换器的简化版本,并且是朝着行进方向发展的里程碑,以促进对行波直接能量转换器的物理性质的一般理解,并简化建模和结果。驻波直接能量转换器还可以单独作为行波直接能量转换器的替代产品。所开发的方法利用电容计算中的分析简化来避免使用计算网格,从而以较低的仿真运行时间对驻波直接能量转换器系统进行建模,同时使用显式数值方法来推进离子组(称为离子束) 。给定初始离子能量,离子束密度,工作频率,减速器电极半径和减速器电极数的输入,优化方案将返回最佳电极间距和电路电阻值。该方法将离子束近似为设备轴上的点电荷,并考虑了这种近似的局限性。离子束的膨胀经过分析处理,并在离子束的密度和离子减速的持续时间之间施加了有限的权衡。还介绍了性能趋势和其他折衷。

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