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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Performance scaling of inductive pulsed plasma thrusters with coil angle and pulse rate
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Performance scaling of inductive pulsed plasma thrusters with coil angle and pulse rate

机译:具有线圈角度和脉冲率的感应脉冲等离子体推进器的性能缩放

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A circuit model for an inductive pulsed plasma thruster was developed in order to investigate the performance of thrusters with conical coils; the model can accommodate cone-angles from 0 degrees (a straight theta-pinch coil) to 90 degrees (a planar coil). The plasma is treated as a deformable slug that moves both radially and axially in response to the force applied by the coil. The radial equation of motion includes a restoring force due to the plasma pressure, which is derived under the assumption that the electron population is isothermal, while the ions are isothermal, adiabatic, or shock-heated depending on the magnitude and sign of the radial velocity. The inductance of the coil and the plasma slug, and their mutual inductance, was determined using QuickField. A local maximum in efficiency and specific impulse was found for angles less than 90 degrees; however the absolute maximum for both these quantities occurs at 90 degrees. High pulse-rate operation was found to yield dynamic efficiencies (excluding ionization cost) as high as 60-70% for I-SP in the range of 3000-5000 s, even for a device with modest jet-power (5 kW). This mode of operation also permits elimination of the pulsed gas valve, which would be a significant system-level simplification. An alternate mode of inductive recapture, in which the current is interrupted at the second zero-crossing, was found to result in a sacrifice of only 1-2% in efficiency, while offering other significant system-level benefits for this kind of thruster.
机译:开发了一种用于电感脉冲推进器的电路模型,以研究推进器与锥形线圈的性能;该模型可以容纳从0度(直线夹线圈)到90度(平面线圈)的锥角。将等离子体被处理为可变形块,其响应于线圈施加的力而径向和轴向移动。运动的径向方程包括由于等离子体压力而导致的恢复力,这在假设电子群是等温的情况下导出,而离子是等温,绝热或震动,这取决于径向速度的幅度和符号。使用Quickfield测定线圈和等离子体块的电感及其互感。发现效率和特定脉冲的局部最大值为小于90度;然而,两种数量的绝对最大值发生在90度。发现高脉冲速率操作以产生高达60-70%的动态效率(不包括电离成本),即在3000-5000秒的范围内,即使对于具有适度喷射功率(5 kW)的设备,也是如此。这种操作模式还允许消除脉冲气阀,这将是一个显着的系统级简化。发现电感recapture的替代模式,其中电流在第二零轴上中断,效率仅为1-2%的牺牲,同时为这种推进器提供了其他显着的系统级益处。

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