260058 VO Hydrodynamics (2015S)
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max. 12 participants
Language: English
Lecturers
Classes (iCal) - next class is marked with N
- Tuesday 03.03. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 10.03. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 17.03. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 24.03. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 14.04. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 21.04. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 28.04. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 05.05. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 12.05. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 19.05. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 02.06. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 09.06. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 16.06. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 23.06. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
- Tuesday 30.06. 10:15 - 11:45 Kleiner Seminarraum, Zi.3510, Boltzmanngasse 5, 5. Stk., 1090 Wien
Information
Aims, contents and method of the course
Assessment and permitted materials
Assignments given during the course
Minimum requirements and assessment criteria
This course is a modern introduction to hydrodynamics and its applications in actual
problems of physics, ranging from single-component fluid dynamics to complex/
multiphase fluid flows. An accent will be put on learning how to use state-of-the-art
computational tools to solve complex problems.
problems of physics, ranging from single-component fluid dynamics to complex/
multiphase fluid flows. An accent will be put on learning how to use state-of-the-art
computational tools to solve complex problems.
Examination topics
Theory, Computer Simulations
Reading list
- Batchelor, An introduction to Fluid Dynamics, Cambridge University Press, 2000
- Landau, Lifshitz, Course of Theoretical Physics, Vol. 6 (Fluid Dynamics) Vol. 10 (Physical
Kinetics)
- Barrat, Hansen, Basic Concepts for Simple and Complex Liquids, Cambridge University
Press, 2003
- Succi, The lattice-Boltzmann Equation for Fluid Dynamics and Beyond, Oxford University
Press, 2001
- Sukop, Thorne, Lattice-Boltzmann Modelling, Springer, 2005
- Tennekes, Lumley, A first course in turbulence, MIT Press, 1994
- Landau, Lifshitz, Course of Theoretical Physics, Vol. 6 (Fluid Dynamics) Vol. 10 (Physical
Kinetics)
- Barrat, Hansen, Basic Concepts for Simple and Complex Liquids, Cambridge University
Press, 2003
- Succi, The lattice-Boltzmann Equation for Fluid Dynamics and Beyond, Oxford University
Press, 2001
- Sukop, Thorne, Lattice-Boltzmann Modelling, Springer, 2005
- Tennekes, Lumley, A first course in turbulence, MIT Press, 1994
Association in the course directory
MaG 7, MaG 8, MaG 23, MaG 24
Last modified: Mo 07.09.2020 15:40
- Analytical solutions of Navier-Stokes equations
- Characteristic Scales, Turbulence
- Connection to statistical mechanics: from Boltzmann transport equation to
hydrodynamics
- Computational Fluid Dynamics: Finite Elements, Lattice-Boltzmann, Dissipative
Particle Dynamics
- Hands On: Lattice-Boltzmann simulations of laminar and turbulent flows
Part II: Complex/Multiphase Fluids
- Charged fluids: electroosmotic flow ; colloidal electrophoresis
- Hands On: transport in microfluidic channels
- Multicomponent fluids: emulsions
- Multicomponent Lattice-Boltzmann simulation approaches
- Hands On: Shan-Chen simulations of spinodal decomposition and droplets