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Development of a coupled analysis regarding the rotor/dynamic components of a rotorcraft

机译:关于旋翼飞机的旋翼/动力部件的耦合分析的发展

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摘要

This paper presents a combined analysis for the rotor and dynamic components of a rotorcraft. The dynamic components consist of the following elements: a rotor shaft, a drive train, the engine shafts, and an engine and its governor. In this paper, the dynamic components were developed in a modularized fashion and combined with the rotor analysis. The present rotor structural analysis was derived based on the mixed variational formulation of moving beams and combined with finite-state dynamic inflow aerodynamics. A linear mass-spring-damper connection was used for a drive train representation and a simple linear control algorithm was used for an engine governor. To analyze the response of the components, a state-space equation was established based on the torque equilibrium. The present multi-component structural and aerodynamic analysis was solved for by measuring the steady-state trim and time-transient response. Numerical validation was performed using a sample hingeless rotor in a tiltrotor aircraft. The present prediction showed good agreement with CAMRAD II for both the trim analysis and the transient analysis with the trimmed state. And distinctions between the rotor with and without dynamic components were verified. Thus, an accurate framework for the rotor system including the dynamic components was developed, which would be useful during the preliminary design stage of creating a rotorcraft.
机译:本文提出了旋翼飞机的旋翼和动力部件的综合分析。动态组件包括以下元素:转子轴,传动系,发动机轴以及发动机及其调速器。在本文中,动态组件以模块化的方式开发,并与转子分析相结合。本发明的转子结构分析是基于动梁的混合变分公式并结合有限状态动态流入空气动力学得出的。线性质量弹簧阻尼器连接用于传动系统表示,简单的线性控制算法用于发动机调速器。为了分析部件的响应,基于扭矩平衡建立了一个状态空间方程。通过测量稳态微调和时间瞬态响应,解决了当前的多组分结构和空气动力学分析问题。使用倾斜旋翼飞机中的无铰链样品进行数值验证。目前的预测表明,与CAMRAD II在修整分析和具有修整状态的瞬态分析方面都具有良好的一致性。并验证了带有和不带有动态组件的转子之间的区别。因此,为包括动态组件的旋翼系统开发了一个精确的框架,这在创建旋翼飞机的初步设计阶段将是有用的。

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