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首页> 外文期刊>Nonlinear dynamics >Dimensionless modeling and nonlinear analysis of a coupled pitch-plunge-leadlag airfoil-based piezoaeroelastic energy harvesting system
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Dimensionless modeling and nonlinear analysis of a coupled pitch-plunge-leadlag airfoil-based piezoaeroelastic energy harvesting system

机译:基于耦合间距引线锚固翼型的压电塑性能量收集系统的无量纲建模与非线性分析

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In this paper, an airfoil-based piezoaeroelastic energy harvesting system is proposed with an additional supporting device to harvest the mechanical energy from the leadlag motion. A dimensionless dynamic model is built considering the large-effective-angle-of-attack vibrations causing (1) the nonlinear coupling between the pitch-plunge-leadlag motions, (2) the inertia nonlinearity, and (3) the aerodynamic nonlinearity modeled by the ONERA dynamic stall model. Cubic hardening stiffness is introduced in the pitch degree of freedom for persistent vibrations with acceptable amplitude beyond the flutter boundary. The nonlinear aeroelastic response and the average power output are numerically studied. Limit cycle oscillations are observed and, as the flow velocity exceeds a secondary critical speed, the system experiences complex vibrations. The power output from the leadlag motion is smaller than that from the plunge motion, whereas the gap is narrowed with increasing flow velocity. Case studies are performed toward the effects of several dimensionless system parameters, including the nonlinear torsional stiffness, airfoil mass eccentricity, airfoil radius of gyration, mass of the supporting devices, and load resistances in the external circuits. The optimal parameter values for the power outputs from the plunge and leadlag motions are, respectively, obtained. Beyond the secondary critical speed, it is shown that the variations of the power outputs with those parameters become irregular with fluctuations and multiple local maximums. The bifurcation analysis shows the mutual transitions between the limit cycle oscillations, multi-periodic vibrations, and possible chaos. The influences of these complex vibrations on the power outputs are discussed.
机译:在本文中,提出了一种基于翼型的压电式能量收集系统,其具有额外的支撑装置来从引线运动中收获机械能。建立无量纲动态模型,考虑了大有效的攻击振动,导致(1)间距 - 引线 - 引线运动之间的非线性耦合,(2)惯性非线性,和(3)模型的空气动力学非线性Onera动态失速模型。在持续振动的俯仰程度上引入立方化硬化刚度,以具有超出颤振边界的可接受的振幅。非线性空气弹性响应和平均功率输出在数值上进行了研究。观察到极限循环振荡,随着流速超过二级临界速度,系统经历复杂的振动。从引线运动输出的功率小于来自插入运动的功率,而随着流速的增加,间隙变窄。案例研究是针对几维无量纲系统参数的影响,包括非线性扭转刚度,翼型块偏心,翼型的环绕,支撑装置的质量,以及外部电路的负载。从PLU内和引领LAG运动的功率输出的最佳参数值分别获得。超出二级临界速度,结果表明,随着这些参数的功率输出的变化与波动和多个局部最大值不规则。分叉分析显示了极限循环振荡,多周期振动和可能的混沌之间的相互转变。讨论了这些复杂振动对电力输出的影响。

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