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Moving an asteroid with electric solar wind sail

机译:用太阳风帆移动小行星

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The electric solar wind sail (E-Sail) is a new propulsion method for interplanetary travel which was invented in 2006 and is currently under development. The E-Sail uses charged tethers to extract momentum from the solar wind particles to obtain propulsive thrust. According to current estimates, the E-Sail is 2-3 orders of magnitude better than traditional propulsion methods (chemical rockets and ion engines) in terms of produced lifetime-integrated impulse per propulsion system mass. Here we analyze the problem of using the E-Sail for directly deflecting an Earth-threatening asteroid. The problem then culminates into how to attach the E-Sail device to the asteroid. We assess alternative attachment strategies, namely straightforward direct towing with a cable and the gravity tractor method which works for a wider variety of situations. We also consider possible techniques to scale up the E-Sail force beyond the baseline one Newton level to deal with more imminent or larger asteroid or cometary threats. As a baseline case we consider an asteroid of effective diameter of 140 m and mass of 3 million tons, which can be deflected with a baseline 1 N E-Sail within 10 years. With a 5 N E-Sail the deflection could be achieved in 5 years. Once developed, the E-Sail would appear to provide a safe and reasonably low-cost way of deflecting dangerous asteroids and other heavenly bodies in cases where the collision threat becomes known several years in advance.
机译:电动太阳风帆(E-Sail)是行星际旅行的一种新的推进方法,于2006年发明,目前正在开发中。电子帆使用带电的系绳从太阳风粒子中提取动量以获得推进力。根据目前的估计,就每个推进系统质量产生的寿命积分脉冲而言,E型帆比传统推进方法(化学火箭和离子发动机)好2-3个数量级。在这里,我们分析了使用电子帆直接偏转威胁地球的小行星的问题。然后,问题最终演变为如何将E-Sail设备连接到小行星。我们评估了替代的连接策略,即使用电缆直接直接拖曳和重力拖拉机方法,这种方法适用于各种情况。我们还考虑了可能的技术,以将电子风帆的力量扩大到超过基线一个牛顿水平,以应对更迫在眉睫或更大的小行星或彗星威胁。作为基准案例,我们考虑有效直径为140 m,质量为300万吨的小行星,可以在10年内用基准1 N E-Sail偏转。使用5 N E-Sail可以在5年内实现偏转。一旦开发成功,电子风帆似乎将提供一种安全且合理的低成本方式,以在危险威胁小行星和其他天体提前几年知道的情况下进行偏转。

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