4. B modeling#

4.1. Characteristics of modeling#

_images/1000068E00001B63000017AB3D137CA7BDA6AF2A.svg

We use Chaboche’s viscoplastic law (VISC_CIN1_CHAB).

4.2. Characteristics of the mesh#

Number of knots:

8

Number of meshes and types:

1 HEXA8

4.3. Tested sizes and results#

Identification

Reference

Reference type

Tolerance (%)

Deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0.0481774\)

“AUTRE_ASTER”

\(0.1\)

Thermal deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0\)

“AUTRE_ASTER”

\(0.1\)

Mechanical deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0.0481774\)

“AUTRE_ASTER”

\(0.1\)

Plastic deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0.0469364\)

“AUTRE_ASTER”

\(0.1\)

Deformation \(\mathit{EPXY}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0.0434488\)

“AUTRE_ASTER”

\(0.1\)

Mechanical deformation \(\mathit{EPXY}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0.0434488\)

“AUTRE_ASTER”

\(0.1\)

Plastic deformation \(\mathit{EPXY}\) at node \(\mathit{NO2}\) to \(t=10.0s\)

\(0.0424755\)

“AUTRE_ASTER”

\(0.1\)

Deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=60.0s\)

\(0.0930464\)

“AUTRE_ASTER”

\(0.1\)

Mechanical deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=60.0s\)

\(0.0930464\)

“AUTRE_ASTER”

\(0.1\)

Plastic deformation \(\mathit{EPXX}\) at node \(\mathit{NO2}\) to \(t=60.0s\)

\(0.0918054\)

“AUTRE_ASTER”

\(0.1\)

Deformation \(\mathit{EPXY}\) at node \(\mathit{NO2}\) to \(t=60.0s\)

\(0.0840534\)

“AUTRE_ASTER”

\(0.1\)

Mechanical deformation \(\mathit{EPXY}\) at node \(\mathit{NO2}\) to \(t=60.0s\)

\(0.0840534\)

“AUTRE_ASTER”

\(0.1\)

Plastic deformation \(\mathit{EPXY}\) at node \(\mathit{NO2}\) to \(t=60.0s\)

\(0.0830801\)

“AUTRE_ASTER”

\(0.1\)