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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Aeroelastic energy harvesting in flutter condition increases with combined nonlinear stiffness and nonlinear piezoelectrical coupling
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Aeroelastic energy harvesting in flutter condition increases with combined nonlinear stiffness and nonlinear piezoelectrical coupling

机译:颤振条件下的气动弹性能量收集随着非线性刚度和非线性压电耦合的结合而增加

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The dynamic behaviour of an aeroelastic energy harvester using a piezoelectric transducer is studied. An important question in applications of energy harvesting is how to increase the efficiency of energy conversion. The study of both mechanical and electrical nonlinear terms has proven important in this context, both to provide more accurate models and to aid the design of purposely nonlinear systems. Here, the influence of plunge cubic nonlinear stiffness and nonlinear piezoelectrical coupling is investigated with respect to flutter speed, mechanical and electrical power. Different combinations of nonlinear terms are explored and compared to the linear case. The influence of the nonlinear coefficients and of the parameters of the electrical domain on the behaviour of the system are analysed analytically via the method of multiple scales (MMS) and numerically via a fourth-order Runge-Kutta method (RK). A Poincare section method is proposed to determine the period of oscillations of the nonlinear systems at flutter. The results indicate that nonlinear stiffness has more influence in increasing flutter speed, and nonlinear piezoelectrical coupling has more influence in increasing electrical power. More energy is transferred from the pitch motion than from the plunge motion. Flutter speed, mechanical and electrical power increase with nonlinear stiffness, indicating that neglecting this characteristic can lead to underestimation of flutter speed and harvested energy.
机译:研究了使用压电换能器的气动弹性能量收集器的动态行为。能量收集应用中的一个重要问题是如何提高能量转换的效率。在这种情况下,机械和电气非线性项的研究已被证明是重要的,既可以提供更准确的模型,也可以帮助设计有目的的非线性系统。本文研究了切入立方非线性刚度和非线性压电耦合对颤振速度、机械功率和电功率的影响。探索了非线性项的不同组合,并将其与线性情况进行了比较。通过多尺度方法(MMS)进行分析分析,并通过四阶Runge-Kutta方法(RK)进行数值分析,分析了非线性系数和电域参数对系统行为的影响。提出了一种庞加莱截面法来确定非线性系统在颤振时的振荡周期。结果表明:非线性刚度对提高颤振速度的影响更大,非线性压电耦合对提高电功率的影响更大。俯仰运动传递的能量比俯冲运动传递的能量多。颤振速度、机械功率和电功率随非线性刚度的增加而增加,表明忽略这一特性会导致对颤振速度和收集能量的低估。

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