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EXPERIMENTAL CHARACTERIZATION OF A NOVEL PIEZOELECTRIC FAN

机译:新型压电风扇的实验表征

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Piezoelectric fans have attracted attentions in the past decades because of their low energy consumption, low noise level, light weight and reliability. A novel form of piezoelectric flapping fan is characterized experimentally and numerically. An experimental setup was built to measure the pressure and flow rate of piezoelectric fans with low static pressure at various frequencies. The fan performance curve was established. A high speed camera system was used to analyze the oscillation motion of the fan wings. The displacement of the leading edge and trailing edge of the piezoelectric fan wings are used as inputs to describe the deflection of the fan in the numerical model. The flow field obtained from the model is analyzed. The vortex shedding is observed and discussed. The pressure and flow rate obtained from the 2D numerical model are compared with the experimental results. The results provide a fundamental understanding of a piezoelectric fan with opposing oscillating wings.
机译:在过去的几十年中,压电风扇因其低能耗,低噪音,轻巧和可靠而备受关注。通过实验和数值表征了一种新型形式的压电扑翼风扇。建立了一个实验装置,以测量各种频率下具有低静压的压电风扇的压力和流量。建立风扇性能曲线。高速摄像系统用于分析风扇机翼的振动运动。压电风扇翼片的前缘和后缘的位移用作输入值,以描述数值模型中风扇的挠度。分析从模型获得的流场。观察并讨论了涡旋脱落。从二维数值模型获得的压力和流速与实验结果进行了比较。结果为具有相反摆动翼的压电风扇提供了基本的了解。

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