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Periodic and aperiodic bubbling in submerged gas-liquid jets through a micro-channel

机译:通过微通道浸没气液喷射中的周期性和非周期性鼓泡

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The common phenomena of periodic and aperiodic bubbling, which were studied merely in single-phase gas jets, are discovered to exist in submerged gas-liquid jets through a micro-channel. Due to the participation of the liquid input flow which interacts with the gas phase, the periodic and aperiodic bubbling behaviors,as well as the regime transition mechanisms, are quite different from single-phase gas jets. Periodic bubbling is formed by injecting a regular Taylor flow into bulk liquid, in which a special motion of bubbles named "bubble bifurcation" is revealed. Bubbles move into the opposite orientation to the bubbles they touch because unequal contact angles make the bubbles tilt when they detach. The bifurcation process is described by the evolutions of the contact line, bubble centers, and the bifurcation point. The second bifurcation events cause the bubble branches to rotate simultaneously. The difference of periodicity between gas-liquid jets and single-phase gas jets is explained in a dimensionless form as a function of 1/St versus Fr. Aperiodic bubbling including double coalescence, triple, quadruple, and quintuple bubble formation is found to occur at lower gas velocities than single-phase gas jets because of the different mechanism of bubble detachment in which liquid rings make bubbles pitch off before necking. The effect of liquid rings on bubbling period, as well as the disturbance waves spreading over the bubble surface, is explained. Finally, the mechanisms of bubbling losing periodicity are figured out through analyzing the correspondence relationship between the evolutions of bubbling behaviors and the flow regime transitions in the micro-channel with regime boundaries well predicted by corresponding models. Published by AIP Publishing.
机译:仅在单相气体喷射中研究了周期性和非周期性鼓泡的常见现象,以通过微通道存在于浸没的气液喷射中。由于与气相相互作用的液体输入流动的参与,周期性和非周期性鼓泡行为以及制度转变机构与单相气体喷射有很大不同。通过将常规泰勒流入散装液体来形成周期性起气,其中揭示了名为“泡沫分岔”的气泡的特殊运动。气泡移动到它们触摸的气泡中的相反方向,因为不平等的接触角度在分离时使气泡倾斜。通过接触线,气泡中心和分叉点的演进来描述分叉过程。第二分叉事件导致气泡分支同时旋转。气液喷射与单相气体喷射之间的周期性差异以无量纲形式解释为1 / St与FR的功能。发现包括双相结合,三倍,四点和Quintule气泡形成的非周期性鼓泡,因为液体环在缩颈前使泡沫突然脱落的泡沫脱离的不同机制,因此在较低的气体速度下发生在较低的气体速度下发生。解释了液环对鼓泡时段的影响以及在气泡表面上扩散的扰动波。最后,通过分析起泡行为的演变与微通道中的流动调节器之间的对应关系来分析鼓泡失去的周期性的机制。通过AIP发布发布。

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    Zhejiang Univ State Key Lab Fluid Power &

    Mechatron Syst Hangzhou 310027 Zhejiang Peoples R China;

    Zhejiang Univ State Key Lab Fluid Power &

    Mechatron Syst Hangzhou 310027 Zhejiang Peoples R China;

    Zhejiang Univ State Key Lab Fluid Power &

    Mechatron Syst Hangzhou 310027 Zhejiang Peoples R China;

    Zhejiang Univ State Key Lab Fluid Power &

    Mechatron Syst Hangzhou 310027 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 植物生理学;
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