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A Spherical Torus Nuclear Fusion Reactor Space Propulsion Vehicle Concept for Fast Interplanetary Travel

机译:用于快速行星际旅行的球形圆环核聚变反应堆空间推进飞行器概念

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摘要

A conceptual vehicle design enabling fast outer solar system travel was produced predicated on a small aspect ratio spherical torus nuclear fusion reactor. Initial requirements were for a human mission to Saturn with a greater than 5% payload mass fraction and a one way trip time of less than one year. Analysis revealed that the vehicle could deliver a 108 mt crew habitat payload to Saturn rendezvous in 235 days, with an initial mass in low Earth orbit of 2,941 mt. Engineering conceptual design, analysis, and assessment was performed on all ma or systems including payload, central truss, nuclear reactor (including divertor and fuel injector), power conversion (including turbine, compressor, alternator, radiator, recuperator, and conditioning), magnetic nozzle, neutral beam injector, tankage, start/re-start reactor and battery, refrigeration, communications, reaction control, and in-space operations. Detailed assessment was done on reactor operations, including plasma characteristics, power balance, power utilization, and component design.
机译:基于小纵横比的球形圆环核聚变反应堆,提出了能够实现快速的外部太阳系行驶的概念车设计。最初的要求是对人类进行土星飞行任务,其有效载荷质量分数大于5%,单程旅行时间少于一年。分析显示,这辆车可以在235天之内向土星会合点运送108公吨乘员栖息地有效载荷,其低地球轨道的初始质量为2,941公吨。对所有机器或系统进行了工程概念设计,分析和评估,包括有效载荷,中央桁架,核反应堆(包括分流器和燃料喷射器),功率转换(包括涡轮机,压缩机,交流发电机,散热器,换热器和空调)喷嘴,中性射束注入器,储罐,启动/重新启动反应堆和电池,制冷,通信,反应控制和太空操作。对反应堆的运行进行了详细的评估,包括等离子体特性,功率平衡,功率利用率和组件设计。

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