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Results of NASA Technical Challenge to Demonstrate Two-Speed Drive for Vertical Lift Vehicle

机译:美国宇航局展示垂直升降车两速驱动技术挑战的结果

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Currently, manned vertical lift vehicles are flown in a manner such that the rotors operate over a narrow range of rotating speed regardless if the vehicle's flight condition is one of vertical takeoff and landing, hover, or forward cruise. The propulsion systems are optimized for operation at the same, corresponding narrow range of rotor speed. However, certain missions and markets benefit greatly if the rotor speed can be adjusted over a wide range of speed to match demands of different missions and flight regimes. A vehicle that can operate with a wide range of rotor speeds would address key barriers to enable new markets and missions for vertical lift vehicles. Key barriers addressed by the wide-range of rotor speed include noise reduced via lower rpm rotor, increase of maximum forward flight speed, increased payload and range, reduced fuel burn, and lower operating costs. A new paradigm for the propulsion system is needed to enable these key benefits. One viable approach is to make use of a two-speed ratio drive system such that the engine can continue to operate over a narrow speed range, whereby engine performance is optimal, while adjusting the rotor speed as needed using the two-speed drive system. Motivated by such needs and by results of several system studies, a NASA Revolutionary Vertical Lift Technology Challenge was established to develop and demonstrate required technologies and designs for achieving a 50 percent reduction in rotor rpm via a two-speed drive system that incurs less than 2 percent power loss and maintains current power-to-weight ratios. The technical challenge work was completed and the technical objectives were achieved. This report describes the motivations, the research approach and the significant outcomes.
机译:当前,有人驾驶的垂直升降式车辆以这样的方式飞行,即不管车辆的飞行状况是垂直起飞和着陆,悬停还是向前巡航中的一种,旋翼都在狭窄的转速范围内运行。推进系统经过优化,可在相同,相应的狭窄转子转速范围内运行。但是,如果可以在很宽的速度范围内调整旋翼速度以适应不同任务和飞行状态的需求,则某些任务和市场将受益匪浅。可以在多种转子速度下运行的车辆将克服关键障碍,从而为立式提升车带来新的市场和任务。广泛的转子速度所解决的主要障碍包括:通过降低rpm转子来降低噪音,增加最大向前飞行速度,增加有效载荷和航程,减少燃油消耗以及降低运营成本。需要一种新的推进系统范例,以实现这些关键优势。一种可行的方法是利用二速比驱动系统,以使发动机可以继续在狭窄的速度范围内运行,从而在使发动机性能达到最佳的同时,使用二速驱动系统根据需要调节转子速度。出于这种需求以及多项系统研究的结果,NASA发起了革命性垂直举升技术挑战赛,以开发和演示所需的技术和设计,以通过两速驱动系统将转子转速降低50%,从而使转子转速降低2%。功率损耗百分比,并保持当前的功率重量比。技术挑战工作已经完成,技术目标得以实现。该报告描述了动机,研究方法和重大成果。

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