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151-0109-00L 4 Credits BSC , MSC D-CHAB , D-MAVT , D-MATH
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Turbulent Flows

Lecturers & Examiners: Prof. Dr. Patrick Jenny
VVZ CR 2.1

Last Updated: 2026-02-05 15:35:22

Abstract

Contents- Laminar and turbulent flows, instability and origin of turbulence - Statistical description: averaging, turbulent energy, dissipation, closure problem - Scalings. Homogeneous isotropic turbulence, correlations, Fourier representation, energy spectrum - Free turbulence: wake, jet, mixing layer - Wall turbulence: Channel and boundary layer - Computation and modelling of turbulent flows

Objective

Basic physical phenomena of turbulent flows, quantitative and statistical description, basic and averaged equations, principles of turbulent flow computation and elements of turbulence modelling

Content

- Properties of laminar, transitional and turbulent flows. - Origin and control of turbulence. Instability and transition. - Statistical description, averaging, equations for mean and fluctuating quantities, closure problem. - Scalings, homogeneous isotropic turbulence, energy spectrum. - Turbulent free shear flows. Jet, wake, mixing layer. - Wall-bounded turbulent flows. - Turbulent flow computation and modeling.

Resources

Lecture Notes

Lecture notes are available

Literature

S.B. Pope, Turbulent Flows, Cambridge University Press, 2000

General Information

Language
English
Levels
BSC , MSC
Frequency
Yearly recurring

Examination

Type
session examination
Mode
written 120 minutes
Aids
Part A: No written aids allowedPart B: Lecture notes (script) of the course and 8 pages (A4) of own notes on the subject (handwritten or typed) are allowed
Written examination with two parts

Course Components

Type Title Time & Place Hours
lecture Turbulent Flows
The lecturers will communicate the exact lesson times of ONLINE courses.
  • Thu 08:00-10:00 (ON LI NE)
2 h weekly
exercise Turbulent Flows
The lecturers will communicate the exact lesson times of ONLINE courses.
  • Thu 13:00-14:00 (ON LI NE)
1 h weekly

Offered In