Abstract:
We study stationary solutions to a mathematical model describing nonisothermal electroconvection of a weakly conducting polymeric fluid in the channel between two coaxial cylinders.
Keywords:
incompressible polymeric fluid, nonisothermic flow, stationary flows of a polymeric fluid.
Citation:
A. M. Blokhin, A. S. Rudometova, “Stationary currents of a weakly conducting incompressible polymeric fluid between coaxial cylinders”, Sib. Zh. Ind. Mat., 20:4 (2017), 13–21; J. Appl. Industr. Math., 11:4 (2017), 486–493
This publication is cited in the following 4 articles:
D. L. Tkachev, A. V. Yegitov, E. A. Biberdorf, “Linear instability of a resting state of the magnetohydrodynamic flows of polymeric fluid in a cylindrical channel (generalized Vinogradov–Pokrovski model)”, Physics of Fluids, 36:9 (2024)
A. M. Blokhin, R. E. Semenko, A. S. Rudometova, “Magnetohydrodynamic vortex motion of an incompressible polymeric fluid”, J. Appl. Industr. Math., 15:1 (2021), 7–16
A. M. Blokhin, R. E. Semenko, “Stationary “von Karman” vortex structures in the magnetohydrodynamical flows of rotating incompressible polymeric liquid”, Math. Models Comput. Simul., 13:2 (2021), 181–194
A. M. Blokhin, B. V. Semisalov, “Simulation of the stationary nonisothermal MHD flows of polymeric fluids in channels with interior heating elements”, J. Appl. Industr. Math., 14:2 (2020), 222–241