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Design Study of Propulsion and Drive Systems for the Large Civil TiltRotor (LCTR2) Rotorcraft

机译:大型民用旋翼飞机(LCTR2)旋翼飞机推进与驱动系统的设计研究

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Boeing, Rolls-Royce, and NASA have worked together to complete a parametric sizing study for NASA's Large Civil Tilt Rotor (LCTR2) concept 2nd iteration. Vehicle gross weight and fuel usage were evaluated as propulsion and drive system characteristics were varied to maximize the benefit of reduced rotor tip speed during cruise conditions. The study examined different combinations of engine and gearbox variability to achieve rotor cruise tip speed reductions down to 54% of the hover tip speed. Previous NASA studies identified that a 54% rotor speed reduction in cruise minimizes vehicle gross weight and fuel burn. The LCTR2 was the study baseline for initial sizing. This study included rotor tip speed ratios (cruise to hover) of 100%, 77% and 54% at different combinations of engine RPM and gearbox speed reductions, which were analyzed to achieve the lightest overall vehicle gross weight (GW) at the chosen rotor tip speed ratio. Different engine and gearbox technology levels are applied ranging from commercial off-the-shelf (COTS) engines and gearbox technology to entry-in-service (EIS) dates of 2025 and 2035 to assess the benefits of advanced technology on vehicle gross weight and fuel burn. Interim results were previously reported1. This technical paper extends that work and summarizes the final study results including additional engine and drive system study accomplishments. New vehicle sizing data is presented for engine performance at a single operating speed with a multispeed drive system. Modeling details for LCTR2 vehicle sizing and subject engine and drive sub-systems are presented as well. This study was conducted in support of NASA's Fundamental Aeronautics Program, Subsonic Rotary Wing Project.
机译:波音,劳斯莱斯和NASA共同完成了NASA大型民用倾斜转子(LCTR2)概念第二次迭代的参数化尺寸研究。评估了车辆的总重和燃料使用量,以改变推进力和驱动系统的特性,从而最大程度地提高巡航条件下降低转子叶尖速度的好处。该研究检查了发动机和变速箱可变性的不同组合,以实现将转子巡航尖端的速度降低至悬停尖端速度的54%。先前的NASA研究发现,巡航时将转子转速降低54%,可以最大程度地减少车辆的总重和燃油消耗。 LCTR2是初始大小确定的研究基准。这项研究包括在发动机RPM和变速箱减速的不同组合下,转子叶尖的速比(巡航至悬停)分别为100%,77%和54%,这些均被分析以使所选转子上的车辆总重最轻(GW)尖端速度比。应用了不同的发动机和变速箱技术水平,从商用现货(COTS)发动机和变速箱技术到2025和2035年投入服务(EIS)的日期,以评估先进技术对车辆总重和燃料的好处烧伤。先前已报告了中期结果1。本技术论文扩展了这项工作,并总结了最终的研究结果,包括其他发动机和驱动系统的研究成果。提出了新的车辆尺寸数据,用于多速驱动系统在单个操作速度下的发动机性能。还介绍了LCTR2车辆尺寸以及主题发动机和驱动子系统的建模细节。这项研究是为了支持NASA的基础航空计划,亚音速旋转翼项目。

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