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Modeling of fluid flow with heat transfer

Summary

The subject deals with the physical meaning of turbulence and mathematical models of laminar and turbulent flow with heat transfer. The mathematical model is defined by a system of partial differential equations and supplemented by boundary and initial conditions. In addition to normal hydraulic flow conditions, wall conditions, heat transfer through the wall, time-dependent boundary conditions, and conditions for multi-phase flow are also taken into account. Classical models of turbulence are defined in detail. The theory is applied to examples solving bypassing of obstacles, buoyancy force, natural convection, heat transfer through the wall, etc. For the solution is applied software product Ansys-Fluent, which uses the finite volume method.

Literature

[1] ANSYS Fluent User’s Guide (Release 18.2). 2017.
[2] INCROPERA, P. F., DEWITT, P. D., BERGMAN, L. T., LAVINE, S. A. Fundamentals of Heat and Mass Transfer. 997 s. ISBN 978-0-471-45728-2.

Advised literature

[1] ANSYS Fluent Theory Guide (Release 18.2). 2017.
[2] ANSYS Fluent Tutorial Guide (Release 18.2). 2017.


Language of instruction angličtina
Code 338-0551
Abbreviation MPsPT-en
Course title Modeling of fluid flow with heat transfer
Coordinating department Department of Hydromechanics and Hydraulic Equipment
Course coordinator doc. Ing. Marian Bojko, Ph.D.