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JOURNALS // Sibirskii Zhurnal Industrial'noi Matematiki // Archive

Sib. Zh. Ind. Mat., 2023 Volume 26, Number 1, Pages 55–64 (Mi sjim1212)

Numerical simulation of elastic turbulence in a confined two-dimensional cell

V. V. Denisenko, S. V. Fortova

Institute for Computer Aided Design RAS, ul. 2-ya Brestckaya 19/18, Moscow 123056, Russia

Abstract: A numerical model that approximates the system of equations of a viscous fluid with the use of polymeric molecules is described. This model is hybrid and is based on the application of Godunov linearized and finite-difference schemes. This scheme is used to calculate a Kolmogorov-type problem - a viscous flow in a confined area (a square cell) under the action of an external periodic force. The flow with and without impurity is compared, the behavior of polymer molecules in different flow regions is studied. A transition regime characterized by almost complete stretching of molecules in regions of high velocity gradient is obtained.

Keywords: numerical methods in hydrodynamics, elastic turbulence, hydrodynamic instability, non-Newtonian fluid, Kolmogorov’s problem. .

UDC: 532.5

Received: 22.08.2022
Revised: 22.08.2022
Accepted: 29.09.2022

DOI: 10.33048/SIBJIM.2023.26.105


 English version:
Journal of Applied and Industrial Mathematics, 2023, 17:1, 434–50


© Steklov Math. Inst. of RAS, 2024