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Simulation of Aeroelastic Instabilities to Evaluate the Power Output of Flutter-based Electromagnetic Energy Harvesters

机译:喷气弹性不稳定性的仿真评价颤动的电磁能量收割机的功率输出

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The unstable vibration of flexible T-shaped cantilever systems due to the aeroelastic instability phenomena like flutter can be used as an effective input source for small-scale energy harvesting. The extracted environmental energy of a vibrating system can be converted into electrical power using an electromagnetic transducer. The paper presents a two-dimensional fully coupled CFD solverfor simulatingthe flutter induced vibration ofa T-shaped prototypeharvester to model the power output numerically. A flow solver based on Vortex Particle Method and a structural solver using Finite Element formulationsare coupledefficiently to model the unstable vibration of the cantilever harvester.Theoretically, a structural systembecomes unstable and exhibits flutter phenomena when the negative aerodynamic damping exceeds the total system damping. However, for electromagnetic harvester, the total system damping is the sum of the mechanical damping and the additional electrical damping from electromagnetic transducer. The CFD simulations are performed to find the critical onset flutter wind speed and the results are compared with wind tunnel test results for model validation. The critical electrical load resistances for onset of flutter are also identified for different wind speeds and compared withthe wind tunnel results. Finally, the voltage and power output of the harvester under different wind speeds and electrical load resistances are modeled, compared and modifications on the harvester system are done to increase power output.
机译:由于空气弹性不稳定现象,柔性T形悬臂系统的不稳定振动可以用作小规模能量收集的有效输入源。可以使用电磁换能器将振动系统的提取的环境能量转换成电力。本文介绍了一种二维完全耦合的CFD求解器,模拟了T形原型骨骼的颤动诱导振动,以便在数值上模拟功率输出。一种基于涡流颗粒方法的流动求解器和使用有限元配方的结构求解器,其耦合到模拟悬臂收割机的不稳定振动。当负空气动力学阻尼超过总系统阻尼时,结构系统胚胎不稳定并且呈现颤动现象。然而,对于电磁收割机,总系统阻尼是机械阻尼的总和和来自电磁换能器的附加电阻。执行CFD仿真以找到临界起始抖动风速,并将结果与​​风洞测试结果进行比较,以进行模型验证。对于不同的风速,还识别出颤动开始的临界电负载电阻,并与风洞的结果进行比较。最后,采用不同风速和电负载下的收割机的电压和功率输出,进行了建模,比较和收集系统的修改以增加功率输出。

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