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Multiple rendezvous and sample return missions to near-Earth objects using solar sailcraft

机译:使用太阳帆艇向近地物体进行多次会合和样品返回任务

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Solar sailcraft are due to their high ΔV-capability especially capable to perform multiple rendezvous and sample return missions to near-Earth objects. Even with moderate-performance solar sails of the first generation, challenging scientific missions are feasible at relatively low cost. Within this paper, it will be shown that a 300 kg-spacecraft (including a lander and a sample return capsule), propelled by a (70m)~2 solar sail with an additional mass of about 110 kg (specific weight 23 g/m~2), is capable to return a sample from a near-Earth asteroid to Earth within 10 years from launch. In another scenario, a solar sail of the same size and weight is able to propel a 75 kg-spacecraft to rendezvous three near-Earth asteroids subsequently within 7.6 years from launch (with about 200 days of operations at each asteroid). A larger solar sail of about (140 m)~2 would even be capable to transport a spacecraft that returns samples from the three near-Earth asteroids to Earth within about 10 years from launch.
机译:太阳帆飞行器具有很高的ΔV能力,特别是能够对近地物体执行多个集合点和样本返回任务。即使使用第一代性能中等的太阳帆,具有挑战性的科学任务也可以以相对较低的成本实现。在本文中,将显示由(70m)〜2太阳帆推动的300千克航天器(包括着陆器和样品返回舱),附加质量约为110千克(比重23 g / m 〜2),能够在发射后的10年内将样本从近地小行星返回地球。在另一种情况下,具有相同大小和重量的太阳帆能够推动一艘75千克的航天器在发射后7.6年内(每个小行星运行约200天)会合3个近地小行星。大约(140 m)〜2的更大太阳帆甚至能够运输一架航天器,该航天器将在发射后约10年内将三个近地小行星的样本返回地球。

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