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Multibody Dynamics Simulation and Experimental Investigation of a Model-Scale Tiltrotor

机译:模型规模旋耕机的多体动力学仿真与实验研究

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摘要

The objective of this investigation is to illustrate the steps involved in developing a multibody dynamics analytical model to simulate the aeroelastic stability and blade loading of a soft-inplane tiltrotor wind tunnel model and to correlate those simulations with experimental data. Development of soft-inplane tiltrotor technology is beneficial for providing viable lightweight hub design options for future heavy lift transport rotorcraft application. Experimental verification of such advanced configurations using either subscale models in wind tunnels or full-scale flight testing is becoming prohibitively expensive. Advanced modeling and simulation of complex tiltrotor hub configurations using multibody dynamics analyses offers an alternative to such expensive experimental verifications. Comprehensive rotorcraft-oriented multibody analyses enable the modeling and simulation of rotor hub systems to a level of detail that allows the complex kinematics and nonlinear effects associated with rotor hub control systems and drive train free play to be considered. The influence of these and other nonlinear effects on the aeromechanical behavior of a tiltrotor model is examined in this study.
机译:这项研究的目的是说明开发多体动力学分析模型以模拟软平面倾斜旋翼风洞模型的气动弹性稳定性和叶片载荷并将这些模拟与实验数据相关的步骤。软飞机倾斜旋翼技术的发展有利于为未来的重型运输旋翼飞机应用提供可行的轻型轮毂设计选择。使用风洞中的子比例模型或全面的飞行测试来进行这种高级配置的实验验证变得越来越昂贵。使用多体动力学分析对复杂的倾斜转子毂配置进行高级建模和仿真,为此类昂贵的实验验证提供了一种替代方法。全面的面向旋翼飞行器的多体分析可以对转子轮毂系统进行建模和仿真,达到详细程度,从而可以考虑与转子轮毂控制系统和传动系自由运转相关的复杂运动学和非线性效应。在这项研究中,研究了这些和其他非线性效应对倾斜转子模型的气动性能的影响。

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