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Circuit Modeling of Rotating Magnetic Field Field-reversed Configuration Thrusters

机译:旋转磁场反向配置推进器的电路建模

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A lumped circuit model is presented for the formation and propagation of a rotating magnetic field field-reversed configuration thruster. The driving coils are treated as two lumped circuit inductors operated 90° out of phase. The plasma is modeled as an inductive load with capacitive and resistive elements, and a series of equations are derived based on Kirchhoff's laws and charge continuity. Plasmoid translation is captured by modeling the whole plasma as a conducting slug undergoing acceleration due to the Lorentz force. Two operating regimes are analyzed: the system with coupling to the plasma and the case in which the ring down of the coils during discharge is fixed. It is found that for high input energies, the efficiency scales inversely with input energy. In addition, several notable trends can be observed in the numerical data. Both specific impulse and efficiency increase with coupling. There is also indication of an optimum efficiency as input energy changes. These observed trends are discussed in the context of projected thruster performance.
机译:提出了一种集总电路模型,用于旋转磁场反向配置推进器的形成和传播。将驱动线圈视为两个集线电路电感器,它们的相位差为90°。等离子体被建模为具有电容和电阻元件的电感负载,并且根据基尔霍夫定律和电荷连续性推导出了一系列方程。通过将整个等离子体建模为传导性塞子,由于洛伦兹力而经历加速,从而捕获了等离子体的平移。分析了两种操作方式:与等离子体耦合的系统和固定放电期间线圈衰荡的情况。发现对于高输入能量,效率与输入能量成反比。此外,在数值数据中可以观察到一些明显的趋势。特定脉冲和效率都随耦合而增加。随着输入能量的变化,还存在最佳效率的迹象。这些观察到的趋势在预计的推进器性能的背景下进行了讨论。

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