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Impact of Vehicle Flexibility on IRVE-II Flight Dynamics

机译:车辆灵活性对IRVE-II飞行动力学的影响

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摘要

The Inflatable Re-entry Vehicle Experiment II (IRVE-II) successfully launched from Wallops Flight Facility (WFF) on August 17, 2009. The primary objectives of this flight test were to demonstrate inflation and re-entry survivability, assess the thermal and drag performance of the reentry vehicle, and to collect flight data for refining pre-flight design and analysis tools. Post-flight analysis including trajectory reconstruction outlined in O Keefe3 demonstrated that the IRVE-II Research Vehicle (RV) met mission objectives but also identified a few anomalies of interest to flight dynamics engineers. Most notable of these anomalies was high normal acceleration during the re-entry pressure pulse. Deflection of the inflatable aeroshell during the pressure pulse was evident in flight video and identified as the likely cause of the anomaly. This paper provides a summary of further post-flight analysis with particular attention to the impact of aeroshell flexibility on flight dynamics and the reconciliation of flight performance with pre-flight models. Independent methods for estimating the magnitude of the deflection of the aeroshell experienced on IRVE-II are discussed. The use of the results to refine models for pre-flight prediction of vehicle performance is then described.
机译:充气式再入飞行器实验II(IRVE-II)于2009年8月17日从Wallops飞行设施(WFF)成功启动。该飞行测试的主要目的是证明充气和再入生存能力,评估热量和阻力再入飞行器的性能,并收集飞行数据以完善飞行前设计和分析工具。 O Keefe3中概述的飞行后分析(包括轨迹重建)表明,IRVE-II研究飞行器(RV)达到了任务目标,但也发现了飞行动力学工程师感兴趣的一些异常现象。这些异常中最值得注意的是在重入压力脉冲期间的高正常加速度。在飞行视频中,在压力脉冲期间可充气的航空器外壳发生了偏转,并且被确定为异常的可能原因。本文提供了进一步的飞行后分析的摘要,尤其关注了航空器灵活性对飞行动力学的影响以及飞行前模型对飞行性能的调节。讨论了估计IRVE-II所经历的机身变形量的独立方法。然后描述了使用结果来完善模型以进行飞行前飞行器性能预测的情况。

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