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WhatIsWhat.txt
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_____________________________________________________________________________________________________________________
| |
| O V E R V I E W O F T H E E X A M P L E S I N T H E O p e n C M I S S - E x a m p l e s F O L D E R |
|___________________________________________________________________________________________________________________|
Thomas Heidlaufs original short description | - How 'we' call the models:
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1: active strain simple | - ActiveStrain
2: multiscale active strain, mechanics only | - ActiveStrainMechanics
( 3: multiscale and multiphysics active strain | - MultiPhysStrain )
4: titin | - Titin
5: titin heterogeneous material properties | - Titin_hetero
3a*: multiscale and multiphysics active strain | - cuboid
(old mechanics formulation) |
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other test examples | and description:
# Simple_titin | simplyfied example 4 (titin). Aaron uses this one - for better overview when handling / reconfigureing deeper object structures.
# ActiveStrainMechanics_BDF and -GL | versions under construction. Apply different ode methods.
# flow_channel | 2D Navier-Stokes flow in channel with parabolic inflow
# coupled_laplace | Laplace equations on two regions coupled via interface with Lagrange multiplier / continuity operator
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*: 3a is similar to 3, However, it works in parallel in contrary to 3. On the other hand, 3 is
(according to Thomas H.) generally more stable in numerical sense. 3a contains incorrect
initialisation in parallel executions.
Example 'cuboid' includes 3a as well as 3. This can be chosen via a constant in line 76 (.TRUE. = 3a, .FALSE. = 3):
LOGICAL, PARAMETER :: OLD_TOMO_MECHANICS = .TRUE.