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Whirl Flutter Investigation of Hingeless Proprotors

机译:颤抖的无铰链发起人调查

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Hingeless proprotor whirl flutter in cruise flight is investigated using comprehensive rotorcraft analysis codes CAM-RAD II and RCAS. Generic hingeless proprotor designs include conventional soft-inplane and stiff-inplane rotors operating at cruise tip speeds typical of existing tiltrotor systems, and a rotor which exhibits higher frequencies and operates at much lower cruise tip speed than existing rotor designs. The effects of blade elasticity, density, speed of sound, unsteady aerodynamics, and realistic airfoil tables on whirl flutter speed are examined. The US Army and NASA have been developing a new wind tunnel test system, TiltRotor Aeroclastic Stability Testbed (TRAST), and preliminary analysis for a notional TRAST hingeless rotor is also presented. The effects of precone, center of gravity, rotor rotational speed, and density on the TRAST whirl flutter stability are examined. CAMRAD II and RCAS show consistently excellent agreement with each other for wide variations of design variables and operating conditions.
机译:使用全面的旋翼飞机分析代码CAM-RAD II和RCAS对巡航飞行中的无铰链proprotor涡动颤振进行了研究。通用的无铰链proprotor设计包括以现有倾斜转子系统典型的巡航尖端速度运行的常规软平面和刚性平面转子,以及与现有转子设计相比,具有更高频率并以更低的巡航尖端速度运行的转子。研究了叶片弹性,密度,声速,不稳定的空气动力学以及真实的翼型表对旋振颤振速度的影响。美国陆军和美国国家航空航天局一直在开发一种新的风洞测试系统TiltRotor气动碎屑稳定性试验台(TRAST),并且还对名义上的TRAST无铰链转子进行了初步分析。检查了前锥,重心,转子转速和密度对TRAST旋振稳定性的影响。 CAMRAD II和RCAS在设计变量和操作条件的广泛变化方面始终显示出极好的一致性。

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