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A Study on Melting Phenomena and Enhanced Heat Transfer of Phase Change Material by Ultrasonic Vibrations

机译:超声振动相变材料的熔融现象及强化传热的研究

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摘要

This study focused on observing the melting phenomena and investigated a principle factor of enhanced heat transfer in phase change material when the ultrasonic vibrations were applied during the melting process. For visualization, particle image velocimetry and thermal-vision camera for observing the flow phenomenon was used. Also, experiments were performed to obtain the experimental results such as melting time and temperature distribution. Besides, structural vibration simulator which is applying a coupled finite element-boundary element method (Coupled FE-BEM) was used for calculation of acoustic pressure occurred by ultrasonic vibrations in liquid region. The results of experimental and numerical observations show that acoustic streaming induced by ultrasonic vibrations is one of the prime effects acoustically enhanced phase change heat transfer and help to accelerate the melting of phase change material. Also, the application technique of visualization and computational simulation introduced in this study is very useful and important to analyze the mechanical behavior of material in a fast fluid dynamic or acoustic field.
机译:这项研究的重点是观察熔化现象,并研究了在熔化过程中施加超声振动时相变材料传热增强的主要因素。为了进行可视化,使用了颗粒图像测速仪和用于观察流动现象的热像仪。另外,进行实验以获得诸如熔化时间和温度分布的实验结果。此外,还采用了应用有限元边界元耦合方法(Coupled FE-BEM)的结构振动模拟器来计算由液体区域中的超声振动引起的声压。实验和数值观察的结果表明,超声振动引起的声流是声增强相变传热的主要作用之一,有助于加速相变材料的熔化。此外,本研究中引入的可视化和计算模拟的应用技术对于分析快速流体动态或声场中材料的机械行为也非常有用和重要。

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