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Orion Launch Abort Vehicle Attitude Control Motor Testing

机译:猎户座发射中止车辆姿态控制电机测试

摘要

Current Orion Launch Abort Vehicle (LAV) configurations use an eight-jet, solid-fueled Attitude Control Motor (ACM) to provide required vehicle control for all proposed abort trajectories. Due to the forward position of the ACM on the LAV, it is necessary to assess the effects of jet-interactions (JI) between the various ACM nozzle plumes and the external flow along the outside surfaces of the vehicle. These JI-induced changes in flight control characteristics must be accounted for in developing ACM operations and LAV flight characteristics. A test program to generate jet interaction aerodynamic increment data for multiple LAV configurations was conducted in the NASA Ames and NASA Langley Unitary Plan Wind Tunnels from August 2007 through December 2009. Using cold air as the simulant gas, powered subscale models were used to generate interaction data at subsonic, transonic, and supersonic test conditions. This paper presents an overview of the complete ACM JI experimental test program for Orion LAV configurations, highlighting ACM system modeling, nozzle scaling assumptions, experimental test techniques, and data reduction methodologies. Lessons learned are discussed, and sample jet interaction data are shown. These data, in conjunction with computational predictions, were used to create the ACM JI increments for all relevant flight databases.
机译:当前的猎户座发射中止飞行器(LAV)配置使用八喷嘴,固体燃料的姿态控制马达(ACM)为所有建议的中止轨迹提供所需的飞行器控制。由于ACM在LAV上的前向位置,因此有必要评估各种ACM喷嘴羽流与沿车辆外表面的外部流动之间的射流相互作用(JI)的影响。这些JI导致的飞行控制特性变化必须在开发ACM操作和LAV飞行特性时加以考虑。从2007年8月到2009年12月,在NASA Ames和NASA Langley单一计划风洞中进行了测试程序,以生成多种LAV配置的喷气相互作用空气动力学增量数据。使用冷空气作为模拟气体,利用动力分尺度模型生成相互作用亚音速,跨音速和超音速测试条件下的数据。本文概述了针对Orion LAV配置的完整ACM JI实验测试程序,重点介绍了ACM系统建模,喷嘴比例假设,实验测试技术和数据缩减方法。讨论了所学到的教训,并显示了射流相互作用的示例数据。这些数据与计算预测一起用于创建所有相关飞行数据库的ACM JI增量。

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