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Airframe Integration Trade Studies for a Reusable Launch Vehicle

机译:可重复使用运载火箭的机身集成贸易研究

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摘要

Future launch vehicles must be lightweight, fully reusable and easily maintained if low-cost access to space is to be achieved. The goal of achieving an economically viable Single-Stage-to-Orbit (SSTO) Reusable Launch Vehicle (RLV) is not easily achieved and success will depend to a large extent on having an integrated and optimized total system. A series of trade studies were performed to meet three objectives. First, to provide structural weights and parametric weight equations as inputs to configuration-level trade studies. Second, to identify, assess and quantify major weight drivers for the RLV airframe. Third, using information on major weight drivers, and considering the RLV as an integrated thermal structure (composed of thrust structures, tanks, thermal protection system, insulation and control surfaces), identify and assess new and innovative approaches or concepts that have the potential for either reducing airframe weight, improving operability, and/or reducing cost.
机译:如果要实现低成本的太空访问,未来的运载火箭必须轻巧,完全可重复使用且易于维护。实现经济上可行的单阶段入轨(SSTO)可重复使用运载火箭(RLV)的目标不容易实现,成功与否在很大程度上取决于是否拥有集成的和优化的整体系统。为了实现三个目标,进行了一系列贸易研究。首先,提供结构权重和参数权重方程作为配置级贸易研究的输入。其次,确定,评估和量化RLV机身的主要重量驱动因素。第三,利用有关主要重量驱动因素的信息,并将RLV视为一个集成的热结构(由推力结构,储罐,热保护系统,隔热和控制表面组成),确定和评估具有潜力的新的创新方法或概念减轻机身重量,提高可操作性和/或降低成本。

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