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Capillary focusing close to a topographic step: Shape and instability of confined liquid filaments

机译:毛细管聚焦接近地形步骤:受限液体细丝的形状和不稳定性

摘要

Step-emulsification is a microfluidic technique for droplet generation which relies on the abrupt decrease of confinement of a liquid filament surrounded by a continuous phase. A striking feature of this geometry is the transition between two distinct droplet breakup regimes, the “step-regime” and “jet-regime,” at a critical capillary number. In the step-regime, small and monodisperse droplets break off from the filament directly at a topographic step, while in the jet-regime a jet protrudes into the larger channel region and large plug-like droplets are produced. We characterize the breakup behavior as a function of the filament geometry and the capillary number and present experimental results on the shape and evolution of the filament for a wide range of capillary numbers in the jet-regime. We compare the experimental results with numerical simulations. Assumptions based on the smallness of the depth of the microfluidic channel allow us to reduce the governing equations to the Hele-Shaw problem with surface tension. The full nonlinear equations are then solved numerically using a volume-of-fluid-based algorithm. The computational framework also captures the transition between both regimes, offering a deeper understanding of the underlying breakup mechanism .
机译:逐步乳化是用于产生液滴的微流技术,其依赖于连续相包围的液体细丝的限制的突然降低。这种几何形状的一个显着特征是在临界毛细管数下,两个不同的液滴破碎方式(“步进方式”和“喷射方式”)之间的过渡。在步进方式下,细小且单分散的液滴直接在地形图步骤上从长丝上脱落,而在喷射方式下,喷射流突入较大的通道区域,并产生大的塞状液滴。我们将破裂行为表征为细丝的几何形状和毛细管数的函数,并针对在喷射条件下大范围的毛细管数呈现细丝的形状和演变的实验结果。我们将实验结果与数值模拟进行比较。基于微流体通道深度较小的假设使我们能够将表面张力的Hele-Shaw问题的控制方程式简化。然后使用基于流体体积的算法对完整的非线性方程进行数值求解。计算框架还捕获了这两种机制之间的过渡,从而提供了对基础分解机制的更深入了解。

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