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Analysis of Tether-Mission Concept for Multiple Flybys of Moon Europa

机译:月亮欧罗巴多次飞越的系绳任务概念分析

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All four giant planets, far from the Earth and sun and having deep gravitational wells, present propulsion and power mission issues, but they also have an ambient plasma and magnetic field that allows for a common mission concept Electrodynamic tethers can provide propellantless drag for planetary capture and operation down the gravitational well, and they can generate power to use along with or be stored for inverting tether current The design for an alternative to NASA's proposed Europa mission is presented here. The operation requires the spacecraft to pass repeatedly near Jupiter, for greater plasma density and magnetic field, raising a radiation-dose issue that past analyses did take into account; tape tethers tens of kilometers long and tens of micrometers thick, for greater operation efficiency, are considered. This might result, however, in attracted electrons reaching the tape with a penetration range that exceeds tape thickness, thereby escaping collection. The mission design requires keeping the range below thickness throughout, resulting in an orbit perijove only hundreds of kilometers above Jupiter and tapes a few kilometers long. A somewhat similar mission design might apply to other giant outer planets.
机译:所有四个远离地球和太阳且具有深重力井的巨型行星都存在推进和动力任务问题,但它们还具有周围的等离子体和磁场,这使它们具有共同的任务概念。电动系链可以为行星捕获提供无推进剂阻力并在重力井下运行,它们可以产生动力以与反向系绳电流一起使用或存储起来。本文介绍了NASA拟议的Europa任务的替代设计。这项操作要求航天器在木星附近反复通过,以获得更大的等离子体密度和磁场,从而产生辐射剂量问题,过去的分析确实考虑了这一问题。为了提高操作效率,人们考虑使用长数十公里,厚数十微米的带状系绳。然而,这可能导致被吸引的电子以超过带厚度的穿透范围到达带,从而逃避了收集。任务设计需要使射程始终保持在厚度以下,从而导致绕木星轨道仅在木星上方数百公里处,而磁带要长几公里。某种类似的任务设计可能适用于其他巨型外行星。

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