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YAV-8B reaction control system bleed and control power usage in hover and transition

机译:YAV-8B反应控制系统排气并控制悬停和过渡中的电源使用

摘要

Using a calibrated Rolls-Royce Pegasus engine and existing aircraft instrumentation and pressure taps, total and individual nozzle reaction control system (RCS) bleed flow rates have been measured on a YAV-8B Harrier during typical short takeoff, transition, hover, and vertical landing maneuvers. RCS thrust forces were calculated from RCS nozzle total pressure measurements, and control power was determined from the moments produced by these thrusts and the aircraft's moments of inertia. These data document the characteristics of the YAV-8B RCS with its basic stability augmentation system (SAS) engaged. Advanced control system designs for the YAV-8B can be compared to the original SAS based on the total bleed use and the percentage of available bleed used. In addition, the peak and mean values of the bleed and control power data can be used for sizing the reaction controls for a future short takeoff and vertical landing (STOVL) aircraft.
机译:使用经过校准的罗尔斯·罗伊斯飞马发动机以及现有的飞机仪表和压力抽头,在典型的短距起飞,过渡,悬停和垂直着陆期间,在YAV-8B rier上测量了总的和单独的喷嘴反作用控制系统(RCS)排气流量。演习。 RCS推力是根据RCS喷嘴的总压力测量值计算得出的,而控制功率则取决于这些推力产生的力矩和飞机的惯性矩。这些数据记录了YAV-8B RCS具备基本稳定度增强系统(SAS)的特性。基于总的放气量和可用放气量的百分比,可以将YAV-8B的高级控制系统设计与原始SAS进行比较。此外,放气和控制功率数据的峰值和平均值可用于确定未来短距起飞和垂直降落(STOVL)飞机的反应控制大小。

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