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Optimisation of an Aeroelastic Flutter Energy Harvester

机译:气动弹振能量收集器的优化

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摘要

This work is an investigation into approaches to optimising an aeroelastic flutter energy harvester in order to maximise power output. The flutter harvester was represented by a nonlinear two degree of freedom system coupled with a linear piezoelectric patch model. The energy harvester model was first optimised under steady state conditions and uniform flow speeds, to determine the values of tunable system parameters for which the power output is maximised. Parameters were then compared for their effectiveness and tuning ability. Furthermore, the performance of the harvester was also assessed at various flow distributions, since the uniform flow speed case is very idealistic. The assessment was carried out for different schemes for tuning the main system parameter for optimal energy generation. In these preliminary results the piezoelectric resistance was tuned to optimise the energy harvester and also used to test the tuning schemes. The three tuning schemes were; periodically setting the parameter, periodically sampling for a steady state before setting the parameter, and continuously varying the parameter.
机译:这项工作是对优化气动弹性颤振能量收集器以最大化功率输出的方法的研究。扑扑收割机以非线性的两自由度系统与线性压电贴片模型耦合为代表。能量收集器模型首先在稳态条件和均匀流速下进行优化,以确定可最大化系统输出功率的可调系统参数的值。然后比较参数的有效性和调整能力。此外,还对各种流量分布下的收割机性能进行了评估,因为均匀流速情况非常理想。对不同的方案进行了评估,以调整主系统参数以获得最佳能量。在这些初步结果中,对压电电阻进行了优化,以优化能量采集器,并还用于测试调整方案。三种调整方案分别是:定期设置参数,在设置参数之前定期采样以获取稳定状态,并连续更改参数。

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