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Evaluation of Superconducting Magnet Shield Configurations for Long Duration Manned Space Missions

机译:长期载人航天任务的超导磁体屏蔽构型评估

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A manned mission to Mars would present an important long-term health risk to the crew members due to the prolonged exposure to the ionizing radiation of galactic cosmic-rays. The radiation levels would largely exceed those encountered in the Apollo missions. An increase in the passive shielding provided by the spacecraft implies a significant increase of the mass. The advent of superconducting magnets in the early 1960s was considered an attractive alternative. The technology allows to generate magnetic fields capable to deflect the cosmic-rays in a manner analogous to the reduction of the particle fluxes in the upper atmosphere due to the Earth’s dipole magnetic field. A series of the three studies have been conducted over the last 5?years, funded successively by European Space Agency (ESA), the NASA Innovative Advanced Concepts (NIAC) program, and the Union European’s Seventh Framework Programme (FP7). The shielding configurations studied are based on high-temperature superconductors, which eliminate the need to operate with liquid helium. The mass estimates of the coils and supporting structure of the engineering designs are based on the current and expected near-future performance of the superconducting materials. In each case, the shield performance, in terms of dose reduction, is provided by a 3-dimensional Monte Carlo simulation, which treats in detail the electromagnetic and hadronic interactions of the galactic-cosmic rays, and the secondary particles they produce in the materials of the shield and spacecraft. A summary of the results of the studies, representing one of the most detailed and comprehensive efforts made in the field, is presented.
机译:由于长时间暴露在银河系宇宙射线的电离辐射中,载人前往火星的任务会对机组人员造成重大的长期健康危险。辐射水平将大大超过阿波罗任务中遇到的辐射水平。航天器提供的无源屏蔽的增加意味着质量的显着增加。 1960年代初,超导磁体的问世被认为是一种有吸引力的选择。该技术允许产生能够偏转宇宙射线的磁场,其方式类似于由于地球的偶极子磁场降低了高层大气中的粒子通量。在过去的5年中,已进行了三项研究中的一系列研究,这些研究先后获得了欧洲航天局(ESA),美国宇航局创新先进概念(NIAC)计划和欧洲联盟第七框架计划(FP7)的资助。所研究的屏蔽配置基于高温超导体,从而无需使用液氦进行操作。工程设计的线圈和支撑结构的质量估算是基于超导材料的当前和预期的近期性能。在每种情况下,屏蔽剂量的降低都是通过3维蒙特卡洛模拟来提供的,该模拟详细处理了银河宇宙射线的电磁和强子相互作用,以及它们在材料中产生的次级粒子。的盾牌和航天器。介绍了研究结果的摘要,代表了该领域所做的最详细和最全面的努力。

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