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Computational Details:

"(Regularized) Driven Cavity (II) at medium Reynolds number with interior square" Back to >>(Regularized) Driven Cavity (II) at medium Reynolds number with interior square<<


Description of the flow problem
Description of the spatial discretization
Description of the temporal discretization
Computer requirements
Mathematical details




Description of the flow problem

  • rectangular domain of height 3 and width 3 with the interior square
  • Dirichlet b.c.'s: the parabolic u-velocity profile with maximum value of 1 at the top and maximum value of 0.5 at the bottom
  • other b.c.'s: zero velocity at fixed walls
  • initial condition at t=0: starting from rest
  • viscosity parameter: 1/nu=5,000




Description of the spatial discretization

  • coarse mesh (=level 2): 32 cells, 48 vertices, 192 d.o.f.`s



  • uniform refinements with exact boundary adaption
  • visualization on level 6: 8,192 cells, 8,448 vertices, 41,472 d.o.f.`s
  • computational mesh on level 8: 131,072 cells, 132,096 vertices, 657,408 d.o.f.`s
  • nonconforming nonparametric rotated bilinear fem's (meanvalue version), UPW




Description of the temporal discretization

  • equidistant time stepping for computation with k=0.033333334
  • equidistant time stepping for visualization with k=0.2 (= 1 frame)
  • Total time T=100 seconds corresponds to 3,000 time steps
  • fractional step theta scheme




Computer requirements

  • date: 12/18/97
  • simulation by: L.Seioukova
  • visualization by: L.Seioukova
  • SUN ULTRA1/170: 103 MB, 155,585 seconds
  • AVS data: 677 MB
  • Software: FEATFLOW1.0 + BOUSS




Mathematical details

  • For more details about numerical and algorithmic aspects see the `Mathematical Background' in the FEATFLOW manual or visit our paper archive for much more details.
  • The problem-specific data for the applied software version including parameter files and input data can be downloaded here!




Please send any comments and suggestions to: featflow@featflow.de