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Numerical Modeling of 3D Fluid Flow

Summary

Course is focused on the possibility of space modeling of flow and the creation of geometry and grid for modeling flow. Students will extend their theoretical knowledge concerning the transfer of mass, momentum and heat of turbulent flow. To solve the system of equations describing the flow the finite volume method will be used. Application of methods will be focused on solving the multiphase flow and flow of discrete particles, the solution flow with chemical reactions, combustion of fuels, etc.
For practical applications Software ANSYS - Fluent and CFX resp. is used. Seminar work will involve mathematical and numerical modeling of practical problems, such as flow around obstacles, natural and mixed convection flow and admixture of material particles, heat transfer wall according to the specific focus of doctoral dissertation

Literature

ANSYS FLUENT INC. FLUENT 13.16- User’s guide. [Online]. c2010. Dostupné z:
< URL:http://sp.1.vsb.cz/DOC/Fluent_12.0.16/html/ug/ /main_pre.htm >.

Advised literature

RODI, W.: Numerische Berechnung turbulenter Stromungen in Forschung und Praxis. Sonderforschungsbereich 210, Karlsruhe: TU, 1992, 245 p.
ROACHE, P.J.: Computational Fluid Dynamics. Albuquerque: Hermosa Publishers, 1976,612 p.
VAN DEN ZANDEN, J.: Numerical Simulation on Fluid Flow. Lecture Notes, Delft: Laboratory for Aero- and Hydrodynamics, 1998, 188 p.
STULL, B.R.: An Introduction to Boundary Layer Meteorology, Dordrecht: Kluwer Academic Publishers, 1994, 666 p.
HEWIT, G., F. and others. Prediction of Turbulent Flow. Cambridge University Press. 343 p. 2005. ISBN-13978-0-521-8389-3
NIKOLAY I. KOLEV. Multiphase flow dynamics. 1, Fundamentals / - 2nd ed. Berlin : Springer, c2005 - xxxv, 753 s. : il. + 1 CD-ROM ISBN 3-540-22106-9
INCROPERA, F. a kol. Fundamentals of Heat and Mass Transfer, 6. edition, John Wiley and Sons 2007, 996p., ISBN 978-0-471-45728-2


Language of instruction čeština, čeština, angličtina
Code 338-0938
Abbreviation NumMod3D
Course title Numerical Modeling of 3D Fluid Flow
Coordinating department Department of Hydromechanics and Hydraulic Equipment
Course coordinator prof. RNDr. Milada Kozubková, CSc.