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首页> 外文期刊>International Journal of Thermal Sciences >Investigation of heat transfer from circular cylinders in high power 10 kHz and 20 kHz acoustic resonant fields
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Investigation of heat transfer from circular cylinders in high power 10 kHz and 20 kHz acoustic resonant fields

机译:研究大功率10 kHz和20 kHz声共振场中圆柱的传热

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摘要

This paper reports on the experimental results of heat transfer in 10 and 20 kHz acoustic resonant standing wave fields for a small cylinder by means of hot-film anemometry. To obtain the high power 10 and 20 kHz acoustic resonant standing wave fields, pairs of oscillating transmitters, each working with slightly different frequencies, were employed. It is shown that the effective sound pressure depends on several parameters like the irradiation number, the amplitude of the transmitters, the impedance, and the frequency. An empirical equation is given to calculate the effective sound pressure in the acoustic standing wave field. A remarkable enhancement of the heat transfer can be observed in the acoustic field compared to free convection. Finally, a correlation is given to predict the heat transfer in such acoustic fields. This correlation is valid for a wide range of Reynolds numbers (4-3000).
机译:本文通过热膜风速计报告了一个小圆柱体在10和20 kHz声共振驻波场中传热的实验结果。为了获得高功率的10和20 kHz声共振驻波场,采用了成对的振荡发射机,每对发射机的工作频率略有不同。结果表明,有效声压取决于几个参数,例如辐照次数,发射器的振幅,阻抗和频率。给出了一个经验方程来计算声驻波场中的有效声压。与自由对流相比,在声场中可以观察到传热的显着增强。最后,给出相关性以预测在这种声场中的热传递。这种相关性适用于广泛的雷诺数(4-3000)。

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