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Growth and collapse of a vapor bubble in a narrow tube

机译:窄管中气泡的生长和破裂

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The fluid mechanical aspects of the axisymmetric growth and collapse of a bubble in a narrow tube filled with a viscous liquid are studied numerically. The tube is open at both ends and connects two liquid reservoirs at constant pressure. The bubble is initially a small sphere and growth is triggered by a large internal pressure applied for a short time. After this initial phase, the motion proceeds by inertia. This model simulates the effect of an intense, localized, brief heating of the liquid which leads to the nucleation and growth of a bubble. The dimensionless parameters governing the problem are discussed and their effects illustrated with several examples. It is also shown that, when the bubble is not located at the midpoint of the tube, a net flow develops capable of pumping fluid from one reservoir to the other. The motivation for this work is offered by the possibility to use vapor bubbles as actuators in fluid-handling microdevices. (C) 2000 American Institute of Physics. [S1070-6631(00)01906-1]. [References: 20]
机译:数值研究了在充满粘性液体的细管中气泡的轴对称增长和破裂的流体力学方面。该管的两端是敞开的,并在恒定压力下连接两个储液罐。气泡最初是一个小球,并且增长是由短时间内施加的较大内部压力触发的。在此初始阶段之后,运动将通过惯性进行。该模型模拟了液体强烈,局部,短暂加热的效果,该加热导致气泡的形核和生长。讨论了控制问题的无量纲参数,并通过几个示例说明了它们的效果。还显示出,当气泡不位于管的中点时,形成净流,该净流能够将流体从一个储器泵送到另一个储器。在流体处理微型设备中使用气泡作为执行器的可能性为这项工作提供了动力。 (C)2000美国物理研究所。 [S1070-6631(00)01906-1]。 [参考:20]

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