![]() | V pondělí 28. 4. 2025 od 17 hodin budou nedostupné některé informační systémy školy z důvodu servisních prací. Jedná se hlavně o Studijní informační systém (SIS), Finanční IS (iFIS/webFIS), MIS/OBD/Verso, Kopla a navázané agendy. Předpokládá se, že v úterý ráno by již vše mělo být opět v provozu. Práce s elektronickou poštou či sdílené disky tímto nijak dotčeny nebudou. Výpočetní centrum |
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This course is focused on description and analysis of heat transfer phenomena in different types of chemical-engineering systems. Theories of heat conduction, heat convection transport and radiation heat transport are presented. Various practical problems related to chemical-engineering applications are solved, e.g., heat conduction in planar or cylindrical walls, conduction in ribs, unsteady and multiple-dimension conduction, convection heat transfer connected with forced convection in confined and unconfined systems, heat transfer in buoyancy-driven flow and in turbulent flow, heat transport in boiling and condensation processes, radiation heat transport among black bodies. Poslední úprava: Přibyl Michal (25.09.2013)
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Z Electronic sources (lectures and solved examples) - author M. Přibyl
D Deen M., Analysis of transport phenomena, Oxford UP, New York, 1998, 0-19-508494-2
D Nellis G., Klein S., Heat transfer, Cambridge UP, Cambridge, 2009, 978-0-521-88107
D Bird R.B., Stewart W.E., Lightfoot E.N., Transport phenomena, Wiley, New York, 2007, 978-0-470-11539-8 Poslední úprava: Přibyl Michal (25.09.2013)
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1. Introduction to heat transfer. Vectors, tensors, differential operators. 2. Fourier equation. One-dimensional steady-state heat conduction. 3. Heat conduction in ribs. Thin fin approximation. Biot number. 4. Unsteady-state one-dimensional heat conduction. Fourier method. 5. Convective heat transport, Peclet number. 6. Heat convection in laminar fluid flows. 7. Laminar thermal boundary layer. Nusselt number, heat transfer coefficient. 8. Heat transfer in unconfined systems, flow around sphere and rode. Prandtl number. 9. Heat transport in free convection, Grashof number. 10. Heat transfer in turbulent flows. Eddy diffusivity model. 11. Heat transfer in boiling. 12. Heat transfer at film condensation 13. Heat radiation, fundamental concepts and relations. 14. Heat radiation, radiation shields, view factors. Poslední úprava: Přibyl Michal (25.09.2013)
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The students will learn how to:
Poslední úprava: Přibyl Michal (25.09.2013)
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Unit operations I Mathematics I Poslední úprava: Přibyl Michal (25.09.2013)
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