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Mars conjunction crewed missions with a reusable hybrid architecture

机译:火星与可重复使用的混合架构的乘员任务

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A new crew Mars architecture has been developed that provides many potential benefits for NASA-led human Mars moons and surface missions beginning in the 2030s or 2040s. By using both chemical and electric propulsion systems where they are most beneficial and maintaining as much orbital energy as possible, the Hybrid spaceship that carries crew round trip to Mars is pre-integrated before launch and can be delivered to orbit by a single launch. After check-out on the way to cis-lunar space, it is refueled and can travel round trip to Mars in less than 1100 days, with a minimum of 300 days in Mars vicinity (opportunity dependent). The entire spaceship is recaptured into cis-lunar space and can be reused. The spaceship consists of a habitat for 4 crew attached to the Hybrid propulsion stage which uses long duration electric and chemical in-space propulsion technologies that are in use today. The hybrid architecture's con-ops has no in-space assembly of the crew transfer vehicle and requires only rendezvous of crew in a highly elliptical Earth orbit for arrival at and departure from the spaceship. The crew transfer vehicle does not travel to Mars so it only needs be able to last in space for weeks and re-enter at lunar velocities. The spaceship can be refueled and resupplied for multiple trips to Mars (every other opportunity). The hybrid propulsion stage for crewed transits can also be utilized for cargo delivery to Mars every other opportunity in a reusable manner to pre-deploy infrastructure required for Mars vicinity operations. Finally, the Hybrid architecture provides evolution options for mitigating key long-duration space exploration risks, including crew microgravity and radiation exposure.
机译:已经开发出一种新的火星船员架构,可为2030或2040年代开始的NASA领导的人类火星卫星和水面飞行任务提供许多潜在的好处。通过同时使用化学和电力推进系统,并在其中发挥最大作用,并保持尽可能多的轨道能量,运载乘员往返火星的混合宇宙飞船在发射前就已预先集成好,可以通过一次发射就送入轨道。在前往顺月空间的途中退房后,将为其加油,并且可以在不到1100天的时间内往返火星,在火星附近至少需要300天(视机会而定)。整个宇宙飞船被重新捕获到顺月空间中,并且可以重复使用。该飞船由一个可容纳4名乘员的栖息地组成,该住所已连接到混合动力推进阶段,该阶段使用了当今使用的长期电力和化学太空推进技术。混合架构的合作社没有在太空中组装乘员转移车,只需要在高度椭圆形的地球轨道上会合乘员即可到达和离开飞船。乘员转移车不会前往火星,因此只需要能够在太空中持续数周并以月球速度重新进入。可以为飞船多次加油和补给飞船(其他任何机会)。用于人员过境的混合推进阶段也可用于以其他方式可重复使用的方式向火星运送货物,以预先部署火星附近行动所需的基础设施。最后,混合架构提供了用于减轻关键的长期太空探索风险(包括机组人员微重力和辐射暴露)的演变选项。

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