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Effect of reduced aft diameter and increased blade number on high-speed counterrotation propeller performance

机译:船尾直径减小和叶片数量增加对高速反向旋转螺旋桨性能的影响

摘要

Performance data of 0.17-scale model counterrotation pusher propeller configurations were taken in the NASA Lewis 8- by 6-Foot Supersonic Wind Tunnel at Mach numbers of 0.66, 0.71, 0.75, and 0.79. These tests investigated the aerodynamic performance of the unducted fan (UDF) demonstrator propeller engine developed in a joint program by General Electric and NASA. Data were recorded to show the effect on counterrotation propeller cruise efficiency of two takeoff noise-reduction concepts. These two concepts are reduced aft blade diameter and increased forward blade number. The four configurations tested were a baseline (F1/A1 8/8) configuration, a reduced aft diameter (F1/A3 8/8) configuration, an increase forward blade number (F1/A1 9/8) configuration, and a combination of the latter two (F1/A3 9/8) configurations. Data were collected with a complex counterrotation propeller test rig via rotating thrust and torque balances and pressure instrumentation. Data comparisons documented the power differences between the baseline and the reduced aft diameter concepts. Performance comparisons to the baseline configuration showed that reducing the aft blade diameter reduced the net efficiency, and adding a blade to the front rotor increased the net efficiency. The combination of the two concepts showed only slightly lower net efficiency than the baseline configuration. It was also found that the counterrotation demonstrator propeller model (F7/A7 8/8) configuration outperformed the baseline (F1/A1 8/8) configuration.
机译:在NASA Lewis 8乘6英尺超音速风洞中以0.16比例模型反向旋转推进器螺旋桨构型的性能数据以0.66、0.71、0.75和0.79的马赫数获取。这些测试调查了通用电气和美国宇航局联合计划开发的无导管风扇(UDF)示威螺旋桨发动机的空气动力学性能。记录数据以显示两种起飞降噪概念对反向旋转螺旋桨巡航效率的影响。这两个概念是减小后叶片直径和增加前叶片数量。测试的四种配置为基准(F1 / A1 8/8)配置,减小的后直径(F1 / A3 8/8)配置,增加的前叶片数量(F1 / A1 9/8)配置以及以下各项的组合后两个(F1 / A3 9/8)配置。通过旋转推力和扭矩平衡以及压力仪表,使用复杂的反向旋转螺旋桨试验台收集数据。数据比较记录了基线和减小的后直径概念之间的功率差异。与基准配置的性能比较表明,减小后叶片直径会降低净效率,而在前转子上增加叶片则会提高净效率。这两个概念的组合显示出净效率仅比基线配置略低。还发现反向旋转演示器螺旋桨模型(F7 / A7 8/8)的配置优于基线(F1 / A1 8/8)的配置。

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