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Space launcher offshore landing and related systems and methods

机译:太空发射器近海着陆以及相关系统和方法

摘要

Launch vehicle systems and methods for landing and recovering a booster stage and/or other portions thereof on a platform at sea or on another body of water are disclosed. In one embodiment, a reusable space launch vehicle is launched from a coastal launch site in a trajectory over water. After booster engine cutoff and upper stage separation, the booster stage reenters the earth's atmosphere in a tail-first orientation. The booster engines are then restarted and the booster stage performs a vertical powered landing on the deck of a pre-positioned sea-going platform. In one embodiment, bidirectional aerodynamic control surfaces control the trajectory of the booster stage as it glides through the earth's atmosphere toward the sea-going platform. The sea-going platform can broadcast its real-time position to the booster stage so that the booster stage can compensate for errors in the position of the sea-going platform due to current drift and/or other factors. After landing, the sea-going platform can be towed by, e.g., a tug, or it can use its own propulsion system, to transport the booster stage back to the coastal launch site or other site for reconditioning and reuse. In another embodiment, the booster stage can be transferred to another vessel for transport. In still further embodiments, the booster can be refurbished while in transit from a sea-based or other landing site.
机译:公开了用于在海上平台或在另一水域上降落和恢复升压级和/或其其他部分的运载火箭系统和方法。在一个实施例中,一种可重复使用的空间运载工具从沿海发射场以水上轨迹发射。助推器发动机切断和上级分离后,助推器级以尾部优先的方向重新进入地球大气层。增压发动机然后重新启动,增压级在预定位远洋平台的甲板上进行垂直动力着陆。在一个实施例中,双向空气动力学控制表面在助力器级滑过地球大气层向海平台滑动时控制助力器级的轨迹。海上平台可以将其实时位置广播到升压台,使得升压台可以补偿由于电流漂移和/或其他因素导致的海上平台位置的误差。降落后,可以用拖船拖曳海上平台,也可以使用自己的推进系统将助推平台运回沿海发射场或其他场址进行翻新和再利用。在另一个实施例中,升压级可以被转移到另一艘船上进行运输。在另外的实施例中,可以在从海上或其他着陆点运输途中对助推器进行翻新。

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