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Short Tethers for Electrodynamic Thrust

机译:电动推力短绳

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摘要

The operational advantages of electrodynamic tethers of moderate length are becoming evident from studies of collision avoidance. Although long tethers (of order of 10 kilometers) provide high efficiency and good adaptability to varying plasma conditions, boosting tethers of moderate length (~ 1 kilometer) and suitable design might still operate at acceptable efficiencies and adequate adaptability to a changing environment. In this paper we carry out a parametric analysis of the performance of 1-km long boosting tethers, to maximize their efficiency. We also discuss the possible use of multiple, parallel such tethers for keeping thrust high when length is decreased. We then estimate the survivability of short tethers to micrometeoroids and orbital debris. Finally, a few considerations are made on the dynamic stability of electrodynamic tether systems versus length.
机译:通过避免碰撞的研究,中等长度的电动系链的操作优势变得显而易见。尽管长的系绳(大约10公里)可提供高效率,并且对变化的等离子体条件具有良好的适应性,但中等长度(〜1公里)的系绳系固和合适的设计仍可在可接受的效率下且对变化的环境具有足够的适应性。在本文中,我们对1公里长的助推系绳的性能进行了参数分析,以最大化其效率。我们还讨论了可能使用多个平行的此类系绳,以在长度减小时保持较高的推力。然后,我们估计短系绳对微流星体和轨道碎片的生存能力。最后,对电动系链系统的动态稳定性与长度进行了一些考虑。

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