Difference between revisions of "Analysis Command"
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(Created page with "Both MPM and FEA calculations can do 2D or axisymmetric calculations. MPM can additionally do 3D calculations. You pick the type of analysis to run with an analysis command. I...") |
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* The first three (0,1,2) are for | * The first three (0,1,2) are for | ||
* In axisymmetric analyses, the x, y, z, directions become R, Z, and θ directions. If any commands do not mention use of R and Z, they may still work or you can use x and y to mean the same thing. When visualizing results, most labels are changed to reflect R, Z, and θ coordinates. The implementation of axisymmetric MPM is described in a paper by Nairn and Guilkey. | * In axisymmetric analyses, the x, y, z, directions become R, Z, and θ directions. If any commands do not mention use of R and Z, they may still work or you can use x and y to mean the same thing. When visualizing results, most labels are changed to reflect R, Z, and θ coordinates. The implementation of axisymmetric MPM is described in a paper by Nairn and Guilkey.<ref>J.A. Nairn and J.E. Guilkey, "Axisymmetric Form of the Generalized Interpolation Material Point Method,"> <i>Computer Methods in Applied Mechanics and Engineering</i>, submitted (2013).</ref> | ||
<a href="http://www.cof.orst.edu/cof/wse/faculty/Nairn/papers/AxisymGIMP.pdf" target="new">paper</a> | |||
== References == | |||
<references/> |
Revision as of 08:56, 25 May 2013
Both MPM and FEA calculations can do 2D or axisymmetric calculations. MPM can additionally do 3D calculations. You pick the type of analysis to run with an analysis command. In command scripts, the format is
Analysis (name or number)
In XML files it is
<Analysis>number<Analysis>
Analysis Options
The possible analysis types, by number or name to use in above commands, are:
- 0 = "Plane Strain" for a 2D plane strain FEA analysis
- 1 = "Plane stress" for a 2D plane stress FEA analysis
- 2 = "Axisymmetric" for an Axisymmetric FEA analysis
- 10 = "Plane Strain MPM" for 2D plane strain dynamic MPM analysis
- 11 = "Plane Stress MPM" or 2D plane stress dynamic MPM analysis
- 12 = "3D MPM" or 3D dynamic MPM analysis
- 13 = "Axisymmetric MPM" for axisymmetric dynamic MPM analysis
Notes
- The first three (0,1,2) are for
- In axisymmetric analyses, the x, y, z, directions become R, Z, and θ directions. If any commands do not mention use of R and Z, they may still work or you can use x and y to mean the same thing. When visualizing results, most labels are changed to reflect R, Z, and θ coordinates. The implementation of axisymmetric MPM is described in a paper by Nairn and Guilkey.[1]
<a href="http://www.cof.orst.edu/cof/wse/faculty/Nairn/papers/AxisymGIMP.pdf" target="new">paper</a>
References
- ↑ J.A. Nairn and J.E. Guilkey, "Axisymmetric Form of the Generalized Interpolation Material Point Method,"> Computer Methods in Applied Mechanics and Engineering, submitted (2013).