Beads, bubbles and drops in microchannels: stability of centred position and equilibrium velocity

HIGHLIGHTS

  • who: J. Fluid Mech. and collaborators from the https://doiorg/101017/jfm2022., Published online by Cambridge University Pressde Ingenieru00edas Industriales, Universidad de Mu00e1laga, Campus de Teatinos, Mu00e1laga, Spain have published the article: Beads, bubbles and drops in microchannels: stability of centred position and equilibrium velocity, in the Journal: (JOURNAL)
  • what: The authors aim to offer a general vision of this problem by performing, both experimentally and numerically, a systematic study of the influence of all parameters of the problem (Reynolds and capillary numbers, dispersed object diameter, density ratio and viscosity ratio) on the equilibrium velocity . . .

     

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