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Particle-in-Cell Simulation Study on the Floating Potential of Spacecraft in the Low Earth Orbit

机译:低地球轨道航天器漂浮势的粒子模拟研究

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In order to further understand the characteristics of the floating potential of low earth orbit spacecraft, the effects of the electron current collection area, background electron temperature, photocurrent emission, spacecraft wake, and the shape of spacecraft on spacecraft floating potential were studied here by particle-in-cell simulation in the low earth orbit. The simulation results show that the electron current collection area and background electron temperature impact on the floating potential by changing the electron current collection of spacecraft. By increasing the electron current collection area or background electron temperature, the spacecraft will float at a lower electric potential with respect to the surrounding plasma. However, the spacecraft wake affects the floating potential by increasing the ion current collected by spacecraft. The emission of the photocurrent from the spacecraft surface, which compensates for the electrons collected from background plasma, causes the floating potential to increase. The shape of the spacecraft is also an important factor influencing the floating potential.
机译:为了进一步了解低地球轨道航天器的漂浮势特性,在此通过粒子研究了电子流收集面积,背景电子温度,光电流发射,航天器尾流和航天器形状对航天器漂浮势的影响。低地球轨道上的单元内仿真。仿真结果表明,通过改变航天器的电子集流方式,电子集流面积和背景电子温度对浮空势有影响。通过增加电子电流收集面积或本底电子温度,航天器将以相对于周围等离子体较低的电势漂浮。但是,航天器尾流会通过增加航天器收集的离子电流来影响浮动电位。来自航天器表面的光电流发射,补偿了从背景等离子体中收集的电子,导致浮动电位增加。航天器的形状也是影响漂浮潜力的重要因素。

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