Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries

In this paper, we analyzed the flat non-isothermal stationary flow of abnormally viscous fluid in the channels with asymmetric boundary conditions and an unknown output boundary. The geometry of the channels in which the problem is considered, is such regions, that at the transition to bipolar a sys...

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Main Author: K. V. Litvinov
Format: Article
Language:English
Published: Yaroslavl State University 2016-06-01
Series:Modelirovanie i Analiz Informacionnyh Sistem
Subjects:
Online Access:https://www.mais-journal.ru/jour/article/view/346
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spelling doaj-38ba6ed4e5914a87ba0e7da9dd2305fd2021-07-29T08:15:21ZengYaroslavl State UniversityModelirovanie i Analiz Informacionnyh Sistem1818-10152313-54172016-06-0123332633310.18255/1818-1015-2016-3-326-333303Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of BoundariesK. V. Litvinov0P.G. Demidov Yaroslavl State UniversityIn this paper, we analyzed the flat non-isothermal stationary flow of abnormally viscous fluid in the channels with asymmetric boundary conditions and an unknown output boundary. The geometry of the channels in which the problem is considered, is such regions, that at the transition to bipolar a system of coordinates map into rectangles. This greatly simplifies the boundary conditions, since it is possible to use an orthogonal grid and boundary conditions are given in its nodes. Fields of this type are often found in applications. The boundary conditions are set as follows: the liquid sticks to the boundaries of the channels, which rotate at different speeds and have different radius and temperature; moreover, temperature at the entrance to deformation is known, while on the boundary with the surface the material has the surface temperature; the pressure on the enter and exit of the region becomes zero. The rheological model only takes into account the anomaly of viscosity. The material is not compressible. This process can be described by a system consisting of continuity equations, the equations of conservation of momentum and an energy equation: ∇https://www.mais-journal.ru/jour/article/view/346non-isothermalabnormally viscous fluidcontinuity equationmomentum equationenergy equationrheology
collection DOAJ
language English
format Article
sources DOAJ
author K. V. Litvinov
spellingShingle K. V. Litvinov
Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries
Modelirovanie i Analiz Informacionnyh Sistem
non-isothermal
abnormally viscous fluid
continuity equation
momentum equation
energy equation
rheology
author_facet K. V. Litvinov
author_sort K. V. Litvinov
title Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries
title_short Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries
title_full Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries
title_fullStr Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries
title_full_unstemmed Modelling of Non-isothermal Flow Abnormally Viscous Fluid in the Channels with Various Geometry of Boundaries
title_sort modelling of non-isothermal flow abnormally viscous fluid in the channels with various geometry of boundaries
publisher Yaroslavl State University
series Modelirovanie i Analiz Informacionnyh Sistem
issn 1818-1015
2313-5417
publishDate 2016-06-01
description In this paper, we analyzed the flat non-isothermal stationary flow of abnormally viscous fluid in the channels with asymmetric boundary conditions and an unknown output boundary. The geometry of the channels in which the problem is considered, is such regions, that at the transition to bipolar a system of coordinates map into rectangles. This greatly simplifies the boundary conditions, since it is possible to use an orthogonal grid and boundary conditions are given in its nodes. Fields of this type are often found in applications. The boundary conditions are set as follows: the liquid sticks to the boundaries of the channels, which rotate at different speeds and have different radius and temperature; moreover, temperature at the entrance to deformation is known, while on the boundary with the surface the material has the surface temperature; the pressure on the enter and exit of the region becomes zero. The rheological model only takes into account the anomaly of viscosity. The material is not compressible. This process can be described by a system consisting of continuity equations, the equations of conservation of momentum and an energy equation: ∇
topic non-isothermal
abnormally viscous fluid
continuity equation
momentum equation
energy equation
rheology
url https://www.mais-journal.ru/jour/article/view/346
work_keys_str_mv AT kvlitvinov modellingofnonisothermalflowabnormallyviscousfluidinthechannelswithvariousgeometryofboundaries
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