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Advanced beam modeling applied to articulated rotor - Implementation in HOST aeromechanic simulation tool

机译:应用于铰接式转子的高级梁建模-在HOST气动力学仿真工具中实现

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Advanced beam modeling is one of the main research topics for Rotorcraft Comprehensive Analysis (RCA) simulation tools enhancement. HOST is the aeromechanic code developed by AIRBUS HELICOPTERS over the last 25 years and it is continuously upgraded to fit to the new needs. To study the most recent evolutions of rotors and blades (such as Blue Edge™ blades) new modeling strategies must be foreseen including an advanced model featuring all geometric and coupling effects of beam in centrifugal environment and a global modeling approach within the RCA software hosting all the simulation tools required for aircraft development. In this scope Airbus Helicopters has launched the development of Beam Advance Model (BAM) and its integration in HOST. After a short recall of BAM theoretical basis, this paper discusses the implementation strategy chosen for such an advanced model, presents the validation of the method and provides the first available results coming from a full integrated trim calculation on articulated rotor. Dynamic results on Blue Edge™ blade whirl tower test demonstrate the relevancy of BAM model while the validation of its implementation in HOST is presented on full-scale straight bladed rotors.
机译:先进的射束建模是Rotorcraft综合分析(RCA)仿真工具增强的主要研究主题之一。 HOST是AIRBUS HELICOPTERS在过去25年间开发的航空机械代码,并且会不断进行升级以适应新的需求。为了研究转子和叶片(例如Blue Edge™叶片)的最新发展,必须预见新的建模策略,包括在离心环境中具有梁的所有几何和耦合效应的高级模型以及RCA软件中托管所有对象的全局建模方法。飞机开发所需的仿真工具。在此范围内,空中客车直升机公司已着手开发“光束超前模型”(BAM),并将其集成到HOST中。在简短回顾了BAM的理论基础之后,本文讨论了为这种高级模型选择的实施策略,提出了该方法的验证,并提供了对铰接式转子进行完整的集成调整计算得出的首个可用结果。 Blue Edge™叶片涡旋塔测试的动态结果证明了BAM模型的相关性,而在全尺寸直叶片转子上展示了其在HOST中的实施验证。

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