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Название: Mathematical Modeling of the Influence of the Karman Vortex Street on Mass Transfer in Electromembrane Systems
Авторы: Uzdenova, A.
Kovalenko, A.
Prosviryakov, E.
Urtenov, M.
Дата публикации: 2023
Издатель: MDPI
Библиографическое описание: Uzdenova, A, Kovalenko, A, Prosviryakov, E & Urtenov, M 2023, 'Mathematical Modeling of the Influence of the Karman Vortex Street on Mass Transfer in Electromembrane Systems', Membranes, Том. 13, № 4, 394. https://doi.org/10.3390/membranes13040394
Uzdenova, A., Kovalenko, A., Prosviryakov, E., & Urtenov, M. (2023). Mathematical Modeling of the Influence of the Karman Vortex Street on Mass Transfer in Electromembrane Systems. Membranes, 13(4), [394]. https://doi.org/10.3390/membranes13040394
Аннотация: In electromembrane systems, the transfer of ions near ion-exchange membranes causes concentration polarization, which significantly complicates mass transfer. Spacers are used to reduce the effect of concentration polarization and increase mass transfer. In this article, for the first time, a theoretical study is carried out, using a two-dimensional mathematical model, of the effect of spacers on the mass transfer process in the desalination channel formed by anion-exchange and cation-exchange membranes under conditions when they cause a developed Karman vortex street. The main idea is that, when the separation of vortices occurs on both sides in turn from the spacer located in the core of the flow where the concentration is maximum, the developed non-stationary Karman vortex street ensures the flow of the solution from the core of the flow alternately into the depleted diffusion layers near the ion-exchange membranes. This reduces the concentration polarization and, accordingly, increases the transport of salt ions. The mathematical model is a boundary value problem for the coupled system of Nernst–Planck–Poisson and Navier–Stokes equations for the potentiodynamic regime. The comparison of the current–voltage characteristics calculated for the desalination channel with and without a spacer showed a significant increase in the intensity of mass transfer due to the development of the Karman vortex street behind the spacer. © 2023 by the authors.
Ключевые слова: ELECTROMEMBRANE SYSTEM
KARMAN VORTEX STREET
MASS TRANSFER
SPACERS
BOUNDARY VALUE PROBLEMS
DESALINATION
ION EXCHANGE
ION EXCHANGE MEMBRANES
IONS
NAVIER STOKES EQUATIONS
POLARIZATION
VORTEX FLOW
ANION EXCHANGE
CONCENTRATION POLARIZATION
ELECTROMEMBRANE SYSTEMS
ION-EXCHANGE MEMBRANE
KARMAN VORTEX STREET
MASS TRANSFER PROCESS
SPACER
THEORETICAL STUDY
TRANSFER OF IONS
TWO-DIMENSIONAL MATHEMATICAL MODELS
MASS TRANSFER
URI: http://elar.urfu.ru/handle/10995/130424
Условия доступа: info:eu-repo/semantics/openAccess
cc-by
Текст лицензии: https://creativecommons.org/licenses/by/4.0/
Идентификатор SCOPUS: 85153863681
Идентификатор WOS: 000977484000001
Идентификатор PURE: 38495470
ISSN: 2077-0375
DOI: 10.3390/membranes13040394
Сведения о поддержке: Russian Foundation for Basic Research, РФФИ: 20-58-12018 NNIO_a
This research was funded by the Russian Foundation for Basic Research, grant number 20-58-12018 NNIO_a “Investigation of the effect of electroconvection, water dissociation and spacer geometry on electrodialysis desalination in intensive current modes”.
Располагается в коллекциях:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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