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Airfoil-based piezoelectric energy harvesting by exploiting the pseudoelastic hysteresis of shape memory alloy springs

机译:通过利用形状记忆合金弹簧的拟弹性滞后来收集基于翼型的压电能量

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摘要

The modeling and analysis of an electromechanically coupled typical aeroelastic section with shape memory alloy springs for wind energy harvesting is addressed in this paper. An airfoil with two-degrees-of-freedom, namely pitch and plunge, is considered and piezoelectric coupling is added to the plunge degree-of-freedom. A load resistance is assumed in the electrical domain of the problem in order to estimate the electrical power output. Shape memory alloy coil springs are modeled in the pitch degree-of-freedom of the typical section. A nickel-titanium alloy that exhibits pseudoelasticity at room temperature is assumed. The constitutive model for the shape memory alloy is based on classical phenomenological models. The unsteady aerodynamic loads are obtained by Jones' approximation to Wagner's indicial function. The resulting nonlinear electroaeroelastic model is cast into a state-space representation and solved with a Runge-Kutta method. The effects of preload values of the shape memory springs and resistive power generation on the aeroelastic behavior of the wind energy harvester are investigated at the flutter boundary and in a post-flutter regime. The nonlinear kinetics of the austenite-to-martensite phase transformation changes the typical linear flutter behavior to stable limit-cycle oscillations over a range of airflow speeds. Such nonlinear aeroelastic behavior introduced by the hysteretic behavior of the SMA springs provides an important source of persistent electrical power.
机译:本文讨论了用形状记忆合金弹簧机电耦合的典型气动弹性截面,以进行风能收集的建模和分析。考虑具有两个自由度的翼型,即俯仰和俯冲,并向该俯冲自由度添加压电耦合。为了估计电功率输出,在问题的电域中假定了负载电阻。形状记忆合金螺旋弹簧以典型截面的俯仰自由度建模。假定镍-钛合金在室温下表现出拟弹性。形状记忆合金的本构模型基于经典的现象学模型。通过琼斯对瓦格纳的独立函数的逼近获得了非定常的空气动力学载荷。生成的非线性电气动弹性模型被转换为状态空间表示形式,并使用Runge-Kutta方法求解。在颤振边界和颤振后状态下,研究了形状记忆弹簧的预紧力值和电阻发电对风能采集器气动弹性行为的影响。奥氏体到马氏体相变的非线性动力学将典型的线性颤动行为在一定的气流速度范围内改变为稳定的极限循环振荡。由SMA弹簧的磁滞行为引入的这种非线性气动弹性行为提供了持久电功率的重要来源。

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