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 S01: Poster Session & Refreshment Break (3:47 - 4:45 p.m.)
3:47 PM,
Monday, November 25, 2024
Room: Hall C & Hall 1
Abstract: S01.00166 : Estimating the local effective eddy viscosity in non-Newtonian Taylor-Couette flow
Presenter:
Akihide Takano
(Hokkaido University)
Authors:
Akihide Takano
(Hokkaido University)
Yuji Tasaka
(Hokkaido University)
Yuichi Murai
(Hokkaido University)
As a first step of the application to non-Newtonian fluids, we demonstrated this method with a surfactant solution. The RANS equation utilized to the analytical method has the kinematic viscosity as a function of the shear rate since the test fluid is non-Newtonian. To separate the momentum transport by the non-Newtonian viscosity from that by eddies, the shear rate dependent kinematic viscosity is required as an input data as well as the mean velocity profile in RANS equation. We measured the kinematic viscosity by an inhouse rheometer, then the eddy viscosity profile was obtained. We confirmed that the eddy viscosity of the surfactant solution reasonably decreased comparing to that of the Newtonian fluid. In the presentation, we will present the theoretical basis of this method and discuss the results and the applicability of the present method to the non-Newtonian fluid.
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