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MULTIPLE RENDEZVOUS AND SAMPLE RETURN MISSIONS TO NEAR-EARTH OBJECTS USING SOLAR SAILCRAFT

机译:使用太阳帆船向近地球对象进行多次Rendezvous和样本返回任务

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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 (70 m)~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 as-teroids 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 sam-ples from the three near-Earth asteroids to Earth within about 10 years from launch.
机译:太阳能sailcraft是由于执行多个交会取样返回任务到近地天体的高ΔV-能力特别能干。即使与第一代的中等性能太阳帆,具有挑战性的科学任务是在相对低的成本是可行的。在该纸时,将示出一个300公斤航天器(包括一个着陆器和样品返回胶囊),助推由(70米)〜2太阳帆与约110公斤(特定配重23克额外的质量/米〜2)时,能够以从近地小行星内从发射10年返回一个样品地球。在另一场景中,相同的尺寸和重量的太阳帆能够内7.6年随后推进75kg的航天器到会合3近地作为-teroids从发射(在每个小行星200天左右的操作)。约(140米)的较大的太阳帆〜2甚至将能够输送了航天器返回来自三个近地小行星地球内从发射大约10年SAM-普莱斯。

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