TME226 Mechanics of fluids

TME226 Mechanics of fluids

Course modules

Recorded lectures

Recorded lectures
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Recorded lectures 39722  
  • Page
    Lecture Fluid Mechanics 1. Euler-Lagrange, strain-rate, vorticity, rotation, eigenvalues-3 Lecture Fluid Mechanics 1. Euler-Lagrange, strain-rate, vorticity, rotation, eigenvalues-3
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  • Page
    Lecture Fluid Mechanics 2. Navier-Stokes, Energy equations, conservative -- non-conservative, The Rayleigh problem Lecture Fluid Mechanics 2. Navier-Stokes, Energy equations, conservative -- non-conservative, The Rayleigh problem
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  • Page
    Lecture Fluid Mechanics 3. channel flow, flat-plate boundary layer, Blasius Lecture Fluid Mechanics 3. channel flow, flat-plate boundary layer, Blasius
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  • Page
    Lecture Fluid Mechanics 4. 3D and 2D vorticity transport eqns, vortex-stretching, vorticity flux Lecture Fluid Mechanics 4. 3D and 2D vorticity transport eqns, vortex-stretching, vorticity flux
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  • Page
    Lecture Fluid Mechanics 5. Bernoulli eq, komplex potential, Cauchy-Riemann, Magnus effect, table tennis, free-kicks in football, Flettner rotors Lecture Fluid Mechanics 5. Bernoulli eq, komplex potential, Cauchy-Riemann, Magnus effect, table tennis, free-kicks in football, Flettner rotors
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  • Page
    Lecture Fluid Mechanics 6. Introduction to turbulence: energy spectrum, Kolmogorov scales, -5/3 law-2 Lecture Fluid Mechanics 6. Introduction to turbulence: energy spectrum, Kolmogorov scales, -5/3 law-2
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  • Page
    Lecture Fluid Mechanics 7. RANS, turbulent stresses, linear wall law, log-law, viscos and turbulent forces Lecture Fluid Mechanics 7. RANS, turbulent stresses, linear wall law, log-law, viscos and turbulent forces
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  • Page
    Lecture Fluid Mechanics 8. Rules for time averaging, Boussinesq assumption, turbulent viscosity, derivation of exact k equation Lecture Fluid Mechanics 8. Rules for time averaging, Boussinesq assumption, turbulent viscosity, derivation of exact k equation
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  • Page
    Lecture Fluid Mechanics 9. derivation of mean kinetic energy equation K, energy flow between k and K, formulation of modelled k and eps equations Lecture Fluid Mechanics 9. derivation of mean kinetic energy equation K, energy flow between k and K, formulation of modelled k and eps equations
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  • Page
    Lecture Fluid Mechanics 10. wall functions, low-re number k-eps model, Taylor expansion, near-wall behavior, damping functions, wall b.c. for epsilon Lecture Fluid Mechanics 10. wall functions, low-re number k-eps model, Taylor expansion, near-wall behavior, damping functions, wall b.c. for epsilon
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  • Page
    Assignment 1, channel flow, introduction Assignment 1, channel flow, introduction
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  • Attachment
    online-lectures-TME225.pdf online-lectures-TME225.pdf
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  • Page
    Introduction Introduction
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  • Page
    Assignement 1, ,boundary layer flow, introduction 2021 Assignement 1, ,boundary layer flow, introduction 2021
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  • Attachment
    online-lectures-TME226-print-out online-lectures-TME226-print-out
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  • Attachment
    solids-and-fluids_turbulent-flow_turbulence-modelling.pdf solids-and-fluids_turbulent-flow_turbulence-modelling.pdf
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Assignment 1

Assignment 1
Module completed Module in progress Module locked
Assignment 1 39724  
  • Assignment
    Assignment 1 Assignment 1
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  • Attachment
    yc.dat yc.dat
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  • Attachment
    xc.dat xc.dat
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  • Attachment
    boundary_layer_data.dat boundary_layer_data.dat
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  • Attachment
    boundary_layer.py boundary_layer.py
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  • Attachment
    boundary_layer.m boundary_layer.m
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  • Attachment
    blasius.dat blasius.dat
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Assignment 2

Assignment 2
Module completed Module in progress Module locked
Assignment 2 39725  
  • Assignment
    Assignment 2 Assignment 2
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  • Attachment
    2dHill.ccm 2dHill.ccm
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  • Attachment
    dphidx_dy.m dphidx_dy.m
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  • Attachment
    dphidx_dy.py dphidx_dy.py
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  • Attachment
    inletProfile.xy inletProfile.xy
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  • Attachment
    Minor-Losses-in-Pipes-Balsiger-Bastos-Behm.pdf Minor-Losses-in-Pipes-Balsiger-Bastos-Behm.pdf
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  • Attachment
    output_standard-keps-low-re.csv output_standard-keps-low-re.csv
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  • Attachment
    pl_vect.m pl_vect.m
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  • Attachment
    pl_vect.py pl_vect.py
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    xh1.xy xh1.xy
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    xh2.xy xh2.xy
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    xh3.xy xh3.xy
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    xh4.xy xh4.xy
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    xh5.xy xh5.xy
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    xh05.xy xh05.xy
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    xh005.xy xh005.xy
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    xh6.xy xh6.xy
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    xh8.xy xh8.xy
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On-line lectures

On-line lectures
Module completed Module in progress Module locked
On-line lectures 39726  
  • Page
    Fluid mechanics: Eularian and Lagrangian Description Fluid mechanics: Eularian and Lagrangian Description
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  • Page
    Boundary layers Boundary layers
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  • Page
    Pressure Fields and acceleration Pressure Fields and acceleration
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  • Page
    Turbulence Turbulence
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  • Page
    Vorticity, part 1 Vorticity, part 1
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  • Page
    Vorticity, part 2 Vorticity, part 2
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    Flow visualization Flow visualization
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minimum score must view must submit must contribute