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CFD modeling of heat transfer by 1.7MHz ultrasound waves

机译:1.7MHz超声波传热的CFD建模

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摘要

This article reports the results of numerical study on the effect of high frequency ultrasounic waves on heat transfer rate. A cylindrical heater surrounded by water was exposed to a 1.7MHz piezoelectric transducer, and its temperature was measured with and without employing the ultrasound vibrations. Heat transfer rate enhancement values at various inputted heat fluxes were found, and augmentations up to 100% were obtained during sonication. The CFD modeling of ultrasound wave propagation was carried out to predict the fluid flow pattern and heat transfer inside the water. The CFD predicted results were in good agreement with the observed results.
机译:本文报道了高频超声波对热传递速率影响的数值研究结果。将被水包围的圆柱形加热器暴露于1.7MHz压电换能器,并在使用和不使用超声振动的情况下测量其温度。发现在各种输入热通量下的传热速率增强值,并且在超声处理期间获得高达100%的增强。进行了超声波传播的CFD建模,以预测流体在水中的流动方式和传热。 CFD的预测结果与观察到的结果非常吻合。

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