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Description of the flow problem
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squared domain of length 4
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one heated circle of radius 1.5 and located at x = 2, y = 2
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inflow b.c.'s: constant velocity 1 at the left bottom
edge i.e in between x=0, y>0 and x=0, y<1
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outflow b.c's: unknown at the right top edge i.e. in
between x=4, y>3 and x=4, y<4
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Other b.c.'s: zero velocity at the fixed walls
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initial condition at t=0: starting from rest
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viscosity parameter: 1/nu=1,000
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Description of the spatial discretization
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coarse mesh (=level 1): 52 cells, 72 vertices, 300 d.o.f.`s
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uniform refinements with exact boundary adaption
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visualization on level 4: 3,328 cells, 3,488 vertices,
16,960 d.o.f.`s
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computational mesh on level 4: 3,328 cells, 3,488 vertices,
16,960 d.o.f.`s
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nonconforming nonparametric rotated bilinear fem's (meanvalue
version), UPW
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Description of the temporal discretization
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equidistant time stepping for computation with k=0.01
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equidistant time stepping for visualization with
k=0.25 (= 1 frame)
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Total time T=30 corresponds to
3,000 time steps
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fractional step theta scheme
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Computer requirements
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date: 03/30/2004
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simulation by: Kuncham Balashankar
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visualization by: Kuncham Balashankar
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SUN ULTRA1/140: 2.83 MB, 1,619 seconds
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GMV data: 68 MB
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Software: FEATFLOW1.2 + BOUSS
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Mathematical details
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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.
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The problem-specific data for the applied software version
including parameter files and
input data can be downloaded
here!
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Please send any comments and suggestions to:
featflow@featflow.de
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