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A numerical study of two-phase Stokes flow in an axisymmetric flow-focusing device

机译:轴对称流聚焦装置中两相斯托克斯流动的数值研究

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摘要

We present a numerical investigation of the time-dependent dynamics of the creation of gas bubbles in an axisymmetric flow-focusing device. The liquid motion is treated as a Stokes flow, and using a generic framework we implement a second-order time-integration scheme and a free-surface model in MATLAB, which interfaces with the finite-element software FEMLAB. We derive scaling laws for the volume of a created bubble and for the gas flow rate, and confirm them numerically. Our results are consistent with existing experimental results by Garstecki et al. [Phys. Rev. Lett. 94, 164501 (2005)], and predict a scaling yet to be observed: the bubble volume scales with the outlet channel radius to the power of 4 and the surface tension. Our axisymmetric simulations further show that the collapse of the gas thread before bubble snap-off is different from the recent experimental results. We suggest that this difference is caused by differences in geometry between experiments and the simulations. ©2006 American Institute of Physics
机译:我们提出了一个在轴对称的流聚焦装置中产生气泡的时间相关动力学的数值研究。液体运动被视为斯托克斯流,并使用通用框架在MATLAB中实现了二阶时间积分方案和自由表面模型,并与有限元软件FEMLAB进行了接口。我们得出了产生的气泡的体积和气体流速的定标定律,并用数字对其进行了确认。我们的结果与Garstecki等人的现有实验结果一致。 [物理牧师94,164501(2005)],并预测有待观察到的缩放比例:气泡体积缩放比例与出口通道半径成4的幂和表面张力有关。我们的轴对称模拟进一步表明,气泡剥落之前气体螺纹的塌陷与最近的实验结果不同。我们建议,这种差异是由实验和模拟之间的几何形状差异引起的。 ©2006美国物理研究所

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