Frontiers in Physics (Feb 2024)

Extensive tip-splitting of injected organic liquid into an aqueous viscoelastic fluid

  • Kiwamu Yoshii,
  • Kiwamu Yoshii,
  • Kojiro Otoguro,
  • Ayane Pygoscelis Sato,
  • Yutaka Sumino,
  • Yutaka Sumino

DOI
https://doi.org/10.3389/fphy.2024.1332187
Journal volume & issue
Vol. 12

Abstract

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The injection of a fluid into another fluid causes a spatiotemporal pattern along the injection front. Viscous fingering is a well-known example when the replaced material is a viscous fluid. Notably, most fluids are, in reality, viscoelastic, i.e., they behave as an elastic solid over short timescales. For this reason, it is important to study the situation when the replaced fluid is viscoelastic. In this study, we observed a dynamics of fluids when an incompressible organic liquid was injected into an oleophilic Hele–Shaw cell filled with an aqueous viscoelastic fluid made of a wormlike micellar solution. We found extensive tip splitting of the injection front, which led to thin fingers with a characteristic size comparable to four times the cell thickness. We examined the material properties and suggest that the thin fingering pattern observed in our system is due to the delamination of viscoelastic fluid from the bottom substrate surface. Our result shows that the effect of interfacial energy in the existing solid layer should be considered in the injection process.

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