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Effect of bubble interface position on propulsion and its control for oscillating-bubble powered microswimmer

机译:气泡-气泡动力微型扫描器的气泡界面位置对推进的影响及其控制

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摘要

It has been previously reported that a gaseous bubble trapped in a one-end-open tube oscillates in the presence of acoustic wave and generates strong microstreaming flows and thus a propulsion force. The propulsion highly depends on the frequency and the voltage of the external acoustic wave. This paper presents a new discovery that the direction of this propulsion is dependent on the relative location of the bubble interface. The oscillating bubble propels forward when its interface stays deep inside the tube. On the contrary, the bubble propels in a reverse direction when its interface is at the exit of the tube. Learning from this phenomenon, we developed and introduced physical structures (necks) to precisely control the location of the bubble interface. As a result, the length and interface position of the bubble is more controllable, and the bubble oscillation and propulsion becomes more predictable and consistent.
机译:以前已经报道过,在声波的存在下,捕获在一端开口的管中的气态气泡振荡并产生强的微流,从而产生推进力。推进力很大程度上取决于外部声波的频率和电压。本文提出了一个新的发现,即该推进的方向取决于气泡界面的相对位置。当其界面停留在管内深处时,振荡气泡会向前推进。相反,当气泡的界面位于管的出口时,气泡沿相反方向推进。从这种现象中学到的知识,我们开发并引入了物理结构(颈部)以精确控制气泡界面的位置。结果,气泡的长度和界面位置更加可控,并且气泡的振动和推进变得更加可预测和一致。

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