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自转状态下转子的非线性动力学:实验与数值相结合的方法

On the nonlinear dynamics of a rotor in autorotation: a combined experimental and numerical approach.

作者信息

Rezgui D, Lowenberg M H

机构信息

Department of Aerospace Engineering, University of Bristol, Bristol BS8 1TR, UK

Department of Aerospace Engineering, University of Bristol, Bristol BS8 1TR, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2015 Sep 28;373(2051). doi: 10.1098/rsta.2014.0411.

Abstract

This article presents a systematic assessment of the use of numerical continuation and bifurcation techniques in investigating the nonlinear periodic behaviour of a teetering rotor operating in forward autorotation. The aim is to illustrate the potential of these tools in revealing complex blade dynamics, when used in combination (not necessarily at the same time) with physical testing. We show a simple procedure to promote understanding of an existing but not fully understood engineering instability problem, when uncertainties in the numerical modelling and constraints in the experimental testing are present. It is proposed that continuation and bifurcation methods can play a significant role in developing numerical and experimental techniques for studying the nonlinear dynamics not only for rotating blades but also for other engineering systems with uncertainties and constraints.

摘要

本文对数值延拓和分岔技术在研究前飞自转状态下跷跷板旋翼的非线性周期行为中的应用进行了系统评估。目的是说明这些工具在与物理测试结合使用(不一定同时使用)时,在揭示复杂叶片动力学方面的潜力。当存在数值建模中的不确定性和实验测试中的约束时,我们展示了一个简单的程序,以促进对一个现有的但尚未完全理解的工程不稳定问题的理解。提出延拓和分岔方法不仅可以在开发用于研究旋转叶片非线性动力学的数值和实验技术方面发挥重要作用,而且在研究具有不确定性和约束的其他工程系统方面也可以发挥重要作用。

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