Stability and breakup of liquid threads and annular layers in a corrugated tube
Qiming Wang

TL;DR
This study investigates how wall corrugation in a cylindrical tube affects the stability and breakup of a liquid thread surrounded by another viscous fluid, revealing conditions that can suppress or promote breakup.
Contribution
The paper introduces a model incorporating wall corrugation effects on liquid thread stability, extending previous thin annulus models with a Floquet analysis and numerical simulations.
Findings
Wall corrugation influences the dominant instability modes.
Long-wave disturbances can destabilize the system despite capillarity.
Wall shape can be tuned to suppress pinching and control breakup.
Abstract
We study the stability and breakup behavior of an axisymmetric liquid thread which is surrounded by another viscous fluid layer through a long wave approximation. The two fluids are immiscible and confined in a concentrically placed cylindrical tube. The effect of the tube wall corrugation is taken into account in the model, which allows the access of the interaction between the wall shape and the thread interfacial dynamics. The linearized system is studied by the Floquet theory due to the presence of non-constant coefficients in the equation and the spectrum is computed numerically via the Fourier-Floquet-Hill method. The resulting features agree qualitatively with those obtained based on a lubrication model in the thin annulus limit, where the short-wave disturbances that would be stabilizing owing to the capillarity in the absence of wall corrugation, can excite some unstable long…
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Taxonomy
TopicsFluid Dynamics and Thin Films · Fluid Dynamics and Heat Transfer · Innovative Microfluidic and Catalytic Techniques Innovation
