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Application of multiple fans with a piezoelectric actuator system inside a pico projector

机译:微型投影仪内部带有压电致动器系统的多个风扇的应用

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摘要

Numerous studies have shown that multiple fans with a piezoelectric actuator (MFPA) system can provide better cooling ability than a single piezoelectric fan with low power consumption and low noise. In this study, five MFPA models were designed and developed to be applied inside a pico projector, and the resonant frequency, the vibrational amplitude and the power consumption of these models were measured. Moreover, the Nusselt number, Richardson number, and thermal resistance were used to evaluate the thermal performance of the MFPA. The results reveal that the MFPA model with a combination of 35-mm long carbon fiber plates and 5-mm long Mylar plates achieves the optimal thermal performance. The thermal resistance, Nusselt number, and Richardson number of the MFPA model were, respectively, 4.13 K/W, 81.25, and 0.018 under 8-W heater power. Further experiments were performed with the optimal model set in different orientations. The results show that the Nusselt number dropped from 81.25 to 59.10 when the orientation changed from the normal case to the upside-down case at 8-W heater power.
机译:大量研究表明,与具有低功耗和低噪音的单个压电风扇相比,带有压电致动器(MFPA)系统的多个风扇可提供更好的冷却能力。在这项研究中,设计并开发了五个MFPA模型以应用于微型投影仪内部,并测量了这些模型的谐振频率,振动幅度和功耗。此外,使用Nusselt数,Richardson数和热阻来评估MFPA的热性能。结果表明,结合了35毫米长的碳纤维板和5毫米长的聚酯薄膜板的MFPA模型实现了最佳的热性能。在8W加热器功率下,MFPA模型的热阻,Nusselt数和Richardson数分别为4.13 K / W,81.25和0.018。在不同方向使用最佳模型集进行了进一步的实验。结果表明,当加热器功率为8 W时,方向从正常情况变为上下颠倒情况时,Nusselt值从81.25下降至59.10。

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