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Piezoelectric and electromagnetic hybrid energy harvesting with low-frequency vibrations of an aerodynamic profile under the air effect

机译:空气效应下空气动力学型材的低频振动压电和电磁混合能量收获

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摘要

In this study, a novel hybrid energy harvesting system consisting of a piezoelectric material and an electromagnetic induction device is experimentally inevstigated. Flow-induced vibrations can be considered as an aerodynamics air effect and can be converted to electrical energy. By connecting an airfoil profile to a beam element, vibrations are occurred on the proposed structure by creating an aerodynamic air effect. This aerodynamic air effect is controlled by using an Arduino board with a solenoid valve connected to the air line. A piezoelectric transduction is attached on the beam, and an electromagnetic-Lorentz induction is connected to the airfoil element at the end of this beam. Energy is simultaneously harvested by using electromagnetic induction and piezoelectric transduction with respect to the vibration motion of the beam. Within the scope of the study, the amount of energy obtained using the piezoelectric material and Lorentz actuator by connecting resistors of different sizes are measured with an oscilloscope. The experimental results show that the amount of energy obtained from the proposed structure is at promising levels that can be used to run small electronic units which commonly used in aerospace applications.
机译:在该研究中,由压电材料和电磁感应装置组成的新型混合能量收集系统是通过实验缺陷的。流动诱导的振动可以被认为是空气动力学空气效果,并且可以转换为电能。通过将翼型曲线连接到梁元件,通过产生空气动力学空气效果,在所提出的结构上发生振动。通过使用连接到空气管线的电磁阀的arduino板来控制这种空气动力学空气效果。压电转导在梁上附着,电磁 - 洛伦兹诱导在该光束的末端连接到翼型元件。通过使用电磁感应和压电转导相对于梁的振动运动同时收获能量。在该研究的范围内,通过示波器测量通过连接不同尺寸的电阻器来使用压电材料和洛伦兹致动器获得的能量的量。实验结果表明,从所提出的结构获得的能量量是有前途的水平,可用于运行通常用于航空航天应用的小型电子单元。

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