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Structural Sizing of a Horizontal Take-Off Launch Vehicle with an Air Collection and Enrichment System

机译:具有空气收集和浓缩系统的卧式起飞运载火箭的结构尺寸

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摘要

In support of NASA's Next Generation Launch Technology (NGLT) program, the Andrews Gryphon booster was studied. The Andrews Gryphon concept is a horizontal lift-off, two-stage-to-orbit, reusable launch vehicle that uses an air collection and enrichment system (ACES). The purpose of the ACES is to collect atmospheric oxygen during a subsonic flight loiter phase and cool it to cryogenic temperature, ultimately resulting in a reduced initial take-off weight To study the performance and size of an air-collection based booster, an initial airplane like shape was established as a baseline and modeled in a vehicle sizing code. The code, SIZER, contains a general series of volume, surface area, and fuel fraction relationships that tie engine and ACES performance with propellant requirements and volumetric constraints in order to establish vehicle closure for the given mission. A key element of system level weight optimization is the use of the SIZER program that provides rapid convergence and a great deal of flexibility for different tank architectures and material suites in order to study their impact on gross lift-off weight. This paper discusses important elements of the sizing code architecture followed by highlights of the baseline booster study.
机译:为了支持NASA的下一代发射技术(NGLT)计划,对Andrews Gryphon助推器进行了研究。安德鲁斯·格里芬(Andrews Gryphon)的概念是一种水平升空,两阶段到轨道,可重复使用的运载火箭,它使用了空气收集和浓缩系统(ACES)。 ACES的目的是在亚音速飞行游荡阶段收集大气中的氧气,并将其冷却至低温,从而最终降低初始起飞重量。研究基于空气收集的助推器(初始飞机)的性能和尺寸建立类似形状的形状作为基线,并以车辆尺寸编码为模型。 SIZER代码包含一系列常规的体积,表面积和燃油分数关系,这些关系将发动机和ACES性能与推进剂要求和体积约束联系在一起,以便为给定任务确定车辆的关闭状态。系统级重量优化的关键要素是使用SIZER程序,该程序可为不同的储罐结构和材料套件提供快速收敛和很大的灵活性,以便研究它们对总提举重量的影响。本文讨论了大小调整代码体系结构的重要元素,然后重点介绍了基线增强器研究。

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