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Computational Assessment of the Aerodynamic Performance of a Variable-Speed Power Turbine for Large Civil Tilt-Rotor Application

机译:大型民用倾斜转子应用的变速动力涡轮机气动性能的计算评估

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The main rotors of the NASA Large Civil Tilt-Rotor notional vehicle operate over a wide speed-range, from 100% at take-off to 54% at cruise. The variable-speed power turbine offers one approach by which to effect this speed variation. Key aero-challenges include high work factors at cruise and wide (40 to 60 deg.) incidence variations in blade and vane rows over the speed range. The turbine design approach must optimize cruise efficiency and minimize off-design penalties at take-off. The accuracy of the off-design incidence loss model is therefore critical to the turbine design. In this effort, 3-D computational analyses are used to assess the variation of turbine efficiency with speed change. The conceptual design of a 4-stage variable-speed power turbine for the Large Civil Tilt-Rotor application is first established at the meanline level. The design of 2-D airfoil sections and resulting 3-D blade and vane rows is documented. 3-D Reynolds Averaged Navier-Stokes computations are used to assess the design and off-design performance of an embedded 1.5-stage portion-Rotor 1, Stator 2, and Rotor 2- of the turbine. The 3-D computational results yield the same efficiency versus speed trends predicted by meanline analyses, supporting the design choice to execute the turbine design at the cruise operating speed.
机译:NASA大型民用倾斜转子概念车的主旋翼在很宽的速度范围内运行,从起飞时的100%到巡航时的54%。变速功率涡轮机提供了一种实现这种速度变化的方法。关键的航空挑战包括巡航时的高工作系数以及在整个速度范围内叶片和叶片排的入射角变化较大(40至60度)。涡轮机设计方法必须优化巡航效率,并最小化起飞时的非设计损失。因此,非设计入射损失模型的准确性对于涡轮机设计至关重要。在这项工作中,使用3-D计算分析来评估涡轮效率随速度变化的变化。首先在中线水平建立用于大型民用倾斜转子应用的4级变速功率涡轮机的概念设计。记录了2-D翼型截面的设计以及由此产生的3-D桨叶和叶片排。 3-D雷诺平均Navier-Stokes计算用于评估嵌入式1.5级部分涡轮的转子1,定子2和转子2的设计和非设计性能。 3-D计算结果得出的效率与均值分析预测的速度趋势相同,从而支持了在巡航运行速度下执行涡轮机设计的设计选择。

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