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首页> 外文期刊>Advances in space research >Drag and propulsive forces in electric sails with negative polarity
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Drag and propulsive forces in electric sails with negative polarity

机译:负极性电动帆中的阻力和推进力

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An electric solar sail (E-sail) is a recent propellantless propulsion concept for a direct exploration of the Solar System. An E-sail consists of a set of bare, conductive tethers at high positiveegative bias, prone to extract solar wind momentum by Coulomb deflection of protons. Additionally, a negatively biased E-sail has been proposed as a concept for de-orbiting space debris with drag forces produced in Low Earth Orbit (LEO). The present work focuses on the negative-bias case with a sheath that must be correctly modeled for a flowing plasma ambient. Ion scattering within the sheath and the resulting force are determined for several plasma conditions. Since the plasma flow does reduce the effective range for the ion scattering within the sheath, the resulting force is then reduced. Tethers at very high negative bias should be required for extremely high plasma flow.
机译:电动太阳帆(E帆)是用于直接探索太阳系的最近的无推进力推进概念。电子风帆由一组处于高正/负偏斜状态下的裸露导电性系绳组成,它们容易因质子的库仑​​偏转而提取太阳风动量。另外,已经提出了一种负偏压的电子帆作为利用低地球轨道(LEO)中产生的阻力使空间碎片绕轨道运动的概念。目前的工作集中在带有护套的负偏压情况下,该护套必须针对流动的等离子体环境进行正确建模。对于几种等离子体条件,确定了护套内的离子散射和合力。由于等离子体流的确减小了护套内离子散射的有效范围,因此减小了合力。对于极高的血浆流量,应使用非常高的负偏压的系链。

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