努塞尔数
传热
传热系数
超声波
对流换热
材料科学
粒子图像测速
强化传热
雷诺数
机械
丘吉尔-伯恩斯坦方程
超声波传感器
热力学
对流
工作(物理)
声学
物理
湍流
作者
Odin Bulliard-Sauret,Sébastien Ferrouillat,Laure Vignal,Alain Memponteil,Nicolas Gondrexon
标识
DOI:10.1016/j.ultsonch.2017.04.021
摘要
The present work focuses on possible heat transfer enhancement from a heating plate towards tap water in forced convection by means of 2MHz ultrasound. The thermal approach allows to observe the increase of local convective heat transfer coefficients in the presence of ultrasound and to deduce a correlation between ultrasound power and Nusselt number. Heat transfer coefficient under ultrasound remains constant while heat transfer coefficient under silent conditions increases with Reynolds number from 900 up to 5000. Therefore, heat transfer enhancement factor ranges from 25% up to 90% for the same energy conditions (supplied ultrasonic power=110W and supplied thermal power=450W). In the same time cavitational activity due to 2MHz ultrasound emission was characterized from mechanical and chemical viewpoints without significant results. At least, Particle Image Velocimetry (PIV) measurements have been performed in order to investigate hydrodynamic modifications due to the presence of 2MHz ultrasound. It was therefore possible to propose a better understanding of heat transfer enhancement mechanism with high frequency ultrasound.
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