Bulletin of the American Physical Society
77th Annual Meeting of the Division of Fluid Dynamics
Sunday–Tuesday, November 24–26, 2024; Salt Lake City, Utah
Session L27: Flow Instability: Interfacial and Thin Film
8:00 AM–10:23 AM,
Monday, November 25, 2024
Room: 251 E
Chair: Philipp Schlatter, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU)
Abstract: L27.00010 : THE ROLE OF MARANGONI EFFECT ON THE NON-ISOTHERMAL FALLING FLUID FILM INSTABILITY
9:57 AM–10:10 AM
Presenter:
Ayhan Yiğit Y Özel
(Bilkent University)
Authors:
Ayhan Yiğit Y Özel
(Bilkent University)
Luca Biancofiore
(University of L'Aquila)
Christian Ruyer-Quil
(University of Savoy)
To analyze the nonlinear evolution of falling film flows, we use the non-isothermal model [Cellier & Ruyer-Quil, Int. J. Heat Mass Transf., 154, 2020]. This model allows adjustments to the Biot number Bi, Peclet number Pe, the plane inclination angle θ, Reynolds number Re, and Weber number We to attain desired values for the simulation.
The evolution of nonlinear waves changes for various Marangoni numbers Ma, comparing the effects of thermocapillarity and viscosity. Comparing the Ma = 0 case with experimental results [Liu & Gollub, Phys. Fluids 6, 1702—1712, 1994] shows good agreement with the base case without thermocapillarity. As Ma increases, fluid film thickness and wave height rise significantly, with a 10% increase at Ma = 10. Enhanced nonlinear wave formation is evident as Ma exceeds 5. The nonlinear evolution of the fluid film for large Peclet numbers is studied.
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