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EXPERIMENTAL EVALUATION OF NUMERICAL CONTINUATION AND BIFURCATION METHODS APPLIED TO AUTOGYRO ROTOR BLADE AEROMECHANICAL STABILITY

机译:汽车转子叶片气动机械稳定性数值连续化和分叉方法的实验评估

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摘要

This paper presents a systematic assessment of the use of continuation and bifurcation techniques, in investigating the nonlinear periodic behaviour of rotor blades in forward autorotation. Our aim is to illustrate the potential of these tools in revealing complex blade dynamics, when used in combination (not necessarily in real time) with physical testing. We show a simple procedure to promote understanding of an existing engineering instability problem when uncertainties in the numerical modelling are present. It is proposed that continuation and bifurcation methods can play a significant role in developing numerical/experimental techniques for studying blade dynamics for both autorotating and powered rotors, which can be applied even at the preliminary design phase.
机译:本文介绍了对延续和分岔技术的使用进行了系统评估,研究了转子叶片在前向自动的非线性周期性行为。我们的目的是说明这些工具在揭示复杂刀片动态时的潜力,当与物理测试组合使用(不一定实时)时使用。我们展示了一种简单的过程,以促进在存在数值建模中的不确定性时对现有工程不稳定问题的理解。提出,延续和分叉方法可以在开发用于研究自动和动力转子的叶片动力学的数值/实验技术方面发挥重要作用,即使在初步设计阶段也可以应用。

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