Description of a Dynamical Framework to Analyse the Helicopter Tail Rotor

S. Castillo-Rivera, M. Tomas-Rodriguez
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Abstract

In this work, a tail rotor is modelled with the aid of a multibody software to provide an alternative tool in the field of helicopter research. This advanced application captures the complex behaviour of tail rotor dynamics. The model has been built by using VehicleSim software (Version 1.0, Mechanical Simulation Corporation, Ann Arbor, MI, USA) specialized in modelling mechanical systems composed of rigid bodies. The dynamic behaviour and the control action are embedded in the code. Thereby, VehicleSim does not need an external link to another software package. The rotors are articulated, the tail rotor considers flap and feather degrees of freedom for each of the equispaced blades and their dynamic couplings. Details on the model’s implementation are derived, emphasising the modelling aspects that contribute to the coupled dynamics. The obtained results are contrasted with theoretical approaches and these have displayed to agree with the expected behaviour. This rotorcraft model helps to study the performance of a tail rotor under certain dynamic conditions.
直升机尾桨动力学分析框架的描述
在这项工作中,尾桨的建模与多体软件的帮助下,为直升机研究领域提供了一个替代工具。这个先进的应用程序捕捉尾桨动力学的复杂行为。该模型是使用专门为刚体组成的机械系统建模的VehicleSim软件(1.0版,Mechanical Simulation Corporation, Ann Arbor, MI, USA)建立的。动态行为和控制动作嵌入在代码中。因此,VehicleSim不需要外部链接到另一个软件包。尾桨是铰接的,尾桨考虑了每一个叶片的襟翼和羽毛自由度及其动态耦合。详细的模型的实现推导,强调建模方面,有助于耦合动力学。所得结果与理论方法进行了对比,结果与预期行为一致。该模型有助于研究尾桨在一定动态条件下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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