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使用2兆赫超声波增强热传递。

Heat transfer enhancement using 2MHz ultrasound.

作者信息

Bulliard-Sauret Odin, Ferrouillat Sebastien, Vignal Laure, Memponteil Alain, Gondrexon Nicolas

机构信息

Université Grenoble-Alpes - Laboratoire des Ecoulements Géophysiques et Industriels - LEGI UMR 5519, Domaine Universitaire, CS 40700, 38058 Grenoble Cedex 9, France.

Université Grenoble-Alpes - Laboratoire des Ecoulements Géophysiques et Industriels - LEGI UMR 5519, Domaine Universitaire, CS 40700, 38058 Grenoble Cedex 9, France; Université Grenoble-Alpes, CEA-LITEN, 17 Rue des Martyrs, 38000 Grenoble, France.

出版信息

Ultrason Sonochem. 2017 Nov;39:262-271. doi: 10.1016/j.ultsonch.2017.04.021. Epub 2017 Apr 19.

DOI:10.1016/j.ultsonch.2017.04.021
PMID:28732945
Abstract

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.

摘要

目前的工作重点是通过2MHz超声波在强制对流中增强从加热板到自来水的传热。热学方法能够观察到在有超声波存在时局部对流换热系数的增加,并推导出超声功率与努塞尔数之间的相关性。在超声作用下传热系数保持不变,而在无声条件下传热系数随雷诺数从900增加到5000而增大。因此,在相同能量条件下(提供的超声功率 = 110W,提供的热功率 = 450W),传热增强因子范围为25%至90%。同时,从力学和化学角度对2MHz超声发射引起的空化活动进行了表征,但未得到显著结果。至少,已经进行了粒子图像测速(PIV)测量,以研究由于2MHz超声的存在而引起的流体动力学变化。因此,有可能更好地理解高频超声增强传热的机理。

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Ultrason Sonochem. 2021 Mar;71:105351. doi: 10.1016/j.ultsonch.2020.105351. Epub 2020 Oct 1.