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Flight Stability and Control and Performance Results from the Linear Aerospike SR-71 Experiment (LASRE)

机译:线性Aerospike SR-71实验(LASRE)的飞行稳定性以及控制和性能结果

摘要

The Linear Aerospike SR-71 Experiment (LASRE) is presently being conducted to test a 20-percent-scale version of the Linear Aerospike rocket engine. This rocket engine has been chosen to power the X-33 Single Stage to Orbit Technology Demonstrator Vehicle. The rocket engine was integrated into a lifting body configuration and mounted to the upper surface of an SR-71 aircraft. This paper presents stability and control results and performance results from the envelope expansion flight tests of the LASRE configuration up to Mach 1.8 and compares the results with wind tunnel predictions. Longitudinal stability and elevator control effectiveness were well-predicted from wind tunnel tests. Zero-lift pitching moment was mispredicted transonically. Directional stability, dihedral stability, and rudder effectiveness were overpredicted. The SR-71 handling qualities were never significantly impacted as a result of the missed predictions. Performance results confirmed the large amount of wind-tunnel-predicted transonic drag for the LASRE configuration. This drag increase made the performance of the vehicle so poor that acceleration through transonic Mach numbers could not be achieved on a hot day without depleting the available fuel.
机译:目前正在进行线性Aerospike SR-71实验(LASRE),以测试20%比例版本的线性Aerospike火箭发动机。已选择该火箭发动机为X-33单级至轨道技术演示飞行器提供动力。火箭发动机被集成到提升机体中,并安装在SR-71飞机的上表面。本文介绍了LASRE配置高达1.8马赫的包络线扩展飞行测试的稳定性和控制结果以及性能结果,并将结果与​​风洞预测进行了比较。纵向稳定性和电梯控制效果可以通过风洞测试得到很好的预测。零仰角俯仰力矩被跨音速预测错误。方向稳定性,二面体稳定性和方向舵有效性被高估了。 SR-71的处理质量从未因预测失败而受到重大影响。性能结果证实了LASRE配置中大量风洞预测的跨音速阻力。这种阻力的增加使车辆的性能变得如此差,以至于在炎热的天气中如果不消耗可用的燃料就无法实现跨音速马赫数的加速。

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