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Comparison of CAMRAD Ⅱ and RCAS Predictions of Tiltrotor Aeroelastic Stability

机译:旋耕机气动弹性稳定性CAMRADⅡ和RCAS预测的比较

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摘要

Tiltrotor whirl flutter in cruise flight is investigated using comprehensive rotorcraft analysis codes Comprehensive Analytical Model of Rotorcraft Aerodynamics and Dynamics (CAMRAD) II and Rotorcraft Comprehensive Analysis System (RCAS). A generic tiltrotor model with a three-bladed gimballed rotor was systematically developed starting with a simple rigid rotor mounted on a rigid pylon and a more sophisticated model was built up by adding one design variable at a time. The rotor is also coupled with a flexible wing/pylon modeled from NASTRAN for aeroelastic stability analysis. The effects of pitch-flap coupling (delta(3)), blade elasticity, precone, undersling, yoke chord and flap stiffness, pitch link stiffness, rotor rotational speed, density, speed of sound, inflow modeling, unsteady aerodynamics, and realistic airfoil tables on whirl flutter speed are thoroughly examined. With careful and thorough modeling/analysis, aeroelastic stability (frequency and damping) calculated by CAMRAD II and RCAS shows consistently excellent agreement with each other for wide variations of design variables and operating conditions. For the configurations investigated in this study, blade pitch-flap coupling, rotor lag frequency, rotor rotational speed, and density have an important influence on whirl flutter speed.
机译:使用全面的旋翼航空器分析代码,研究了旋翼航空器旋涡颤振,其中包括旋翼航空器动力学和动力学综合分析模型(CAMRAD)II和旋翼航空器综合分析系统(RCAS)。从安装在刚性塔架上的简单刚性转子开始,系统地开发了带有三叶片万向节转子的通用倾斜转子模型,并通过一次添加一个设计变量来构建更复杂的模型。转子还与NASTRAN建模的挠性机翼/塔架相结合,用于气动弹性稳定性分析。俯仰襟翼耦合(delta(3)),叶片弹性,前锥面,下悬带,轭弦和襟翼刚度,俯仰连杆刚度,转子转速,密度,声速,流入模型,不稳定的空气动力学和逼真的翼型的影响旋振速度表已经过彻底检查。通过仔细和彻底的建模/分析,由CAMRAD II和RCAS计算出的气动弹性稳定性(频率和阻尼)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。对于本研究中研究的配置,叶片螺距-襟翼耦合,转子滞后频率,转子转速和密度对涡动颤动速度具有重要影响。

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  • 来源
    《Journal of the American Helicopter Society》 |2018年第2期|022001.1-022001.13|共13页
  • 作者单位

    US Army, Aviat Dev Directorate, Aviat & Missile Res Dev & Engn Ctr, Res Dev & Engn Command,Ames Res Ctr, Moffett Field, CA 94035 USA;

    Bell Helicopter Textron Inc, Rotor Dynam, Ft Worth, TX USA;

    NASA, Ames Res Ctr, Aeromech Off, Moffett Field, CA 94035 USA;

    US Army, Res Lab, Vehicle Technol Directorate, Hampton, VA USA;

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