气泡
材料科学
机械
弯月面
微流控
梯田(农业)
粘度
复合材料
纳米技术
光学
物理
入射(几何)
历史
考古
作者
Markus Stoffel,Sebastian Wahl,Élise Lorenceau,Reinhard Höhler,B. Mercier,Dan Angelescu
标识
DOI:10.1103/physrevlett.108.198302
摘要
We present the design and characterization of a microfluidic bubble generator that has the potential of producing monodisperse bubbles in 256 production channels that can operate in parallel. For a single production channel we demonstrate a production rate of up to 4 kHz with a coefficient of variation of less than 1%. We observe a two-stage bubble production mechanism: initially the gas spreads onto a shallow terrace, and then overflows into a larger foam collection channel; pinning of the liquid-gas meniscus is observed at the terrace edge, the result being an asymmetric pinch-off. A semiempirical physical model predicts the scaling of bubble size with fluid viscosity and gas pressure from measurements of the pinned meniscus width.
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