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Modular Approach to Launch Vehicle Design Based on a Common Core Element

机译:基于通用核心元素的模块化运载火箭设计方法

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摘要

With a heavy lift launch vehicle as the centerpiece of our nation's next exploration architecture's infrastructure, the Advanced Concepts Office at NASA's Marshall Space Flight Center initiated a study to examine the utilization of elements derived from a heavy lift launch vehicle for other potential launch vehicle applications. The premise of this study is to take a vehicle concept, which has been optimized for Lunar Exploration, and utilize the core stage with other existing or near existing stages and boosters to determine lift capabilities for alternative missions. This approach not only yields a vehicle matrix with a wide array of capabilities, but also produces an evolutionary pathway to a vehicle family based on a minimum development and production cost approach to a launch vehicle system architecture, instead of a purely performance driven approach. The upper stages and solid rocket booster selected for this study were chosen to reflect a cross-section of: modified existing assets in the form of a modified Delta IV upper stage and Castor-type boosters; potential near term launch vehicle component designs including an Ares I upper stage and 5-segment boosters; and longer lead vehicle components such as a Shuttle External Tank diameter upper stage. The results of this approach to a modular launch system are given in this paper.
机译:美国国家航空航天局(NASA)马歇尔太空飞行中心(Marshall Space Flight Center)的高级概念办公室以重型起升运载工具作为国家下一个探索架构基础设施的核心,发起了一项研究,以研究重型起重运载工具所产生的元素在其他潜在运载工具应用中的利用情况。本研究的前提是采用针对月球探索进行了优化的车辆概念,并利用核心级以及其他现有或接近现有的级和助推器来确定替代任务的举升能力。这种方法不仅产生具有多种功能的运载工具矩阵,而且还基于对运载火箭系统体系结构的最低开发和生产成本方法(而不是纯粹的性能驱动方法)产生了向车辆族的进化途径。选择用于本研究的上级和固体火箭助推器是为了反映以下方面的横截面:以改良的Delta IV上级和Castor型助推器的形式修改的现有资产。潜在的近期运载火箭部件设计,包括Ares I上级和5段助推器;以及较长的带铅车辆部件,例如Shuttle外部油箱直径较高的级。本文给出了此方法用于模块化发射系统的结果。

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