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首页> 外文期刊>IEEE Transactions on Plasma Science >Propulsive Force in Electric Solar Sails for Missions in the Heliosphere
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Propulsive Force in Electric Solar Sails for Missions in the Heliosphere

机译:太阳电池电动太阳帆的推进力

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摘要

An electric solar sail (E-sail) is a recent propulsion technology concept capable of reaching the edge of the Heliosphere. An E-sail consists of a set of bare tethers at high positiveegative bias capable of deflecting solar wind protons to produce thrust. The propulsive force calculation for a single tether was focused on outer planet missions, considering the characteristic plasma ambient at 1 astronomical unit. However, both ion and electron temperature and plasma density cover a wide range of values within the Heliosphere. Propulsive forces are determined here for the solar wind plasma within the entire Heliosphere. Results show that propulsive forces increase with ion temperature, whereas decrease with electron temperature. In addition, propulsive forces do increase with plasma density despite the sheath decreases.
机译:电动太阳帆(E-sail)是一种新的推进技术,能够到达太阳圈的边缘。电子风帆由一组处于高正/负偏斜状态的裸露的系绳组成,这些系绳能够偏转太阳风质子以产生推力。考虑到1天文单位的特征等离子体环境,单个系绳的推进力计算着重于外行星任务。但是,离子和电子温度以及等离子体密度都覆盖了日光层内的各种值。这里确定了整个太阳圈内太阳风等离子体的推进力。结果表明,推进力随离子温度的升高而增加,而随电子温度的升高而减小。另外,尽管鞘管减少,但推进力确实随血浆密度而增加。

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