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首页> 外文期刊>Annals of the New York Academy of Sciences >Study on Internal Flow and Surface Deformation of Large Droplet Levitated by Ultrasonic Wave
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Study on Internal Flow and Surface Deformation of Large Droplet Levitated by Ultrasonic Wave

机译:超声波悬浮大液滴的内部流动和表面变形研究

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摘要

It is expected that new materials will be manufactured with containerless processing under the microgravity environment in space. Under the microgravity environment, handling technology of molten metal is important for such processes. There are a lot of previous studies about droplet levitation technologies, including the use of acoustic waves, as the holding technology. However, experimental and analytical information about the relationship between surface deformation and internal flow of a large levitated droplet is still unknown. The purpose of this study is to experimentally investigate the large droplet behavior levitated by the acoustic wave field and its internal flow. To achieve this, first, numerical simulation is conducted to clarify the characteristics of acoustic wave field. Second, the levitation characteristic and the internal flow of the levitated droplet are investigated by the ultrasonic standing wave under normal gravity environment. Finally, the levitation characteristic and internal flow of levitated droplet are observed under microgravity in an aircraft to compare results with the experiment performed under the normal gravity environment.
机译:预计将在太空中的微重力环境下通过无容器处理来制造新材料。在微重力环境下,熔融金属的处理技术对于此类过程很重要。以前有很多关于液滴悬浮技术的研究,包括使用声波作为保持技术。然而,关于大的悬浮液滴的表面变形和内部流动之间关系的实验和分析信息仍然未知。这项研究的目的是实验研究声波场及其内部流动引起的大液滴行为。为此,首先进行数值模拟以阐明声波场的特性。其次,利用超声驻波在正常重力环境下研究悬浮液滴的悬浮特性和内部流动。最后,在飞机的微重力下观察悬浮液滴的悬浮特性和内部流动,以将结果与在正常重力环境下进行的实验进行比较。

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