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Response analysis of a pitch-plunge airfoil with structural and aerodynamic nonlinearities subjected to randomly fluctuating flows

机译:具有随机波动流动的结构和空气动力学非线性的俯仰翼型的响应分析

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This study focuses on numerically investigating the response dynamics of a pitch-plunge airfoil with structural nonlinearity under dynamic stall conditions. The aeroelastic responses are investigated for both deterministic and randomly time varying flow conditions. To that end, a pitch-plunge airfoil under dynamic stall condition is considered and the nonlinear aerodynamic loads are computed using a Leishman-Beddoes formulation. It is shown that the presence of structural nonlinearities can give rise to a variety of dynamical responses in the pre-flutter regime. Next, a response analysis under the presence of a randomly fluctuating wind is carried out. It is demonstrated that the route to flutter occurs via a regime of pre-flutter oscillations called intermittency. Finally, the manifestation of these stochastic responses is characterized by invoking stochastic bifurcation concepts. The route to flutter via intermittency is presented in terms of topological changes occurring in the joint-probability density function of the state variables. (C) 2019 Elsevier Ltd. All rights reserved.
机译:该研究侧重于在动态失速条件下用结构非线性进行数值研究俯仰翼型的响应动态。研究了空气弹性响应,针对确定性和随机时间变化的流动条件进行了研究。为此,考虑了动态失速条件下的俯仰翼型,并且使用Leishman-Beddoes配方计算非线性空气动力载荷。结果表明,结构非线性的存在可以引起预颤振制度中的各种动态响应。接下来,执行在随机波动的存在下的响应分析。证明颤动的途径通过称为间歇性的预颤动振荡的制度而发生。最后,通过调用随机分叉概念来表征这些随机响应的表现。通过间隔间歇性扑发的路线在状态变量的关节概率密度函数中发生的拓扑变化方面提出。 (c)2019年elestvier有限公司保留所有权利。

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