Solid Mechanics Application

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'''IN CONSTRUCTION :  "we are now building this page"'''
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'''UNDER CONSTRUCTION :  "we are now building this page"'''
  
 
== Theory ==
 
== Theory ==
  
Continuum Solid Mechanics
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'''Continuum Solid Mechanics Theory''' and '''Non-Linear Finite Elements Theory'''
  
 
== Application contents ==
 
== Application contents ==
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 +
=== Interface ===
  
 
* [[Solid Mechanics Application Problem Type | Problem Type]]
 
* [[Solid Mechanics Application Problem Type | Problem Type]]
* [[Solid Mechanics Application Conditions | Conditions]]
 
* [[Solid Mechanics Application Strategies | Strategies]]
 
* [[Solid Mechanics Application Python Interface | Python Interface]]
 
 
* [[Solid Mechanics Application Input Data | Input Data]]
 
* [[Solid Mechanics Application Input Data | Input Data]]
* [[Solid Mechanics Application Constitutive Laws | Constitutive Laws]]
 
* [[Solid Mechanics Application Utilities | Utilities]]
 
* [[Solid Mechanics Application Yield Criteria| Yield Criteria]]
 
  
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=== Solving scripts ===
  
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* [[Solid Mechanics Application Python Interface | Python Interface]]
  
 
=== Numerical approach ===
 
=== Numerical approach ===
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* [[Solid Mechanics Application Elements | Elements]]
 
* [[Solid Mechanics Application Elements | Elements]]
  
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==== Boundary Conditions ====
  
== List of elements by working space dimension ==
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* [[Solid Mechanics Application Processes | Processes]]
{| class="wikitable" width="100%" style="text-align:left; background:#d0d9dd; border:0px solid #e1eaee; font-size:100%; -moz-border-radius-topleft:0px; -moz-border-radius-bottomleft:0px; padding:0px 0px 0px 0px;" valign="top"
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!Dimension
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!Element
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!Type
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!Geometry
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!Nonlinearity
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!Material Type
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|-style="background:#F1FAFF;"
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| rowspan="3" | 2D
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| [[SmallDisplacement]]
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| Solid
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| 2D Geometries
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| Small Displacement
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| Isotropic
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|-style="background:#F1FAFF;"
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| [[TotalLagrangian]]
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| Solid
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| 2D Geometries
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| Large Displacement
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| Isotropic
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|-style="background:#F1FAFF;"
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| [[UpdatedLagrangian]]
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| Solid
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| 2D Geometries
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| Large Displacement
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| Isotropic
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|-style="background:#F1FAFF;"
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| rowspan="3" | 3D
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| [[SmallDisplacement]]
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| Solid
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| 3D Geometries
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| Small Displacement
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| Isotropic
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|-style="background:#F1FAFF;"
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| [[TotalLagrangian]]
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| Solid
+
| 3D Geometries
+
| Large Displacement
+
| Isotropic
+
|-style="background:#F1FAFF;"
+
| [[UpdatedLagrangian]]
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| Solid
+
| 3D Geometries
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| Large Displacement
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| Isotropic
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|}
+
  
==== space discretization method ====
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==== Loads ====
==== time discretization method ====
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==== stabilization ====
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* [[Solid Mechanics Application Conditions | Conditions]]
 +
 
 +
==== Constitutive Laws ====
 +
 
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* [[Solid Mechanics Application Constitutive Laws | Constitutive Laws]]
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* [[Solid Mechanics Application Yield Criteria| Yield Criteria]]
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* [[Solid Mechanics Application Hardening Laws| Hardening Laws]]
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* [[Solid Mechanics Application Flow Rules| Flow Rules]]
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==== Time Integration Schemes ====
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* [[Solid Mechanics Application Schemes | Schemes]]
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==== Solving Strategies ====
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* [[Solid Mechanics Application Strategies | Strategies]]
 +
 
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==== Utilities ====
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* [[Solid Mechanics Application Utilities | Utilities]]
  
 
== Benchmarks ==
 
== Benchmarks ==
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"'''under construction'''"
  
 
Insert here all the '''benchmarks''' of the application.
 
Insert here all the '''benchmarks''' of the application.
  
For every benchmark insert a video or at list a photo (not only a link)
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For every benchmark insert a video or a photo (not only a link)
  
 
For every benchmark
 
For every benchmark
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- reference with a link the location in which you describe all the theory behind [[Numerical approach]].
 
- reference with a link the location in which you describe all the theory behind [[Numerical approach]].
  
 +
== Application Dependencies ==
  
== How to analyse using the current application ==
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=== Other Kratos Applications used in current application: ===
  
GiD is the pre and post processor.....
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Optional:
  
link to the problem type and to the tutorial already inserted in the kratos-wiki
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* [[ExternalSolversApplication]]
  
== Application Dependencies ==
 
=== Other Kratos Applications used in current Application ===
 
 
=== External libraries ===
 
=== External libraries ===
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 +
Optional:
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* External library for the [[ExternalSolversApplication]] : '''PaStiX''' (http://pastix.gforge.inria.fr/files/README-txt.html)
  
 
== Contact ==
 
== Contact ==
  
For any additional information please contact with ....
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For any question regarding to this application please contact:
== Programming Documentation ==
+
  
 +
Josep Maria Carbonell: [mailto:cpuigbo@cimne.upc.edu cpuigbo@cimne.upc.edu]
 +
 +
or post it in the [http://kratos-wiki.cimne.upc.edu/forum/index.php Kratos Forum]
 +
 +
== Programming Documentation ==
  
Link to trac
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* [[Programming Conventions]]
  
 
[[Category: Applications]]
 
[[Category: Applications]]
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[[Category: Solid Mechanics Application]]

Latest revision as of 00:38, 24 March 2016

UNDER CONSTRUCTION : "we are now building this page"

Contents

Theory

Continuum Solid Mechanics Theory and Non-Linear Finite Elements Theory

Application contents

Interface

Solving scripts

Numerical approach

Elements

Boundary Conditions

Loads

Constitutive Laws

Time Integration Schemes

Solving Strategies

Utilities

Benchmarks

"under construction"

Insert here all the benchmarks of the application.

For every benchmark insert a video or a photo (not only a link)

For every benchmark - brief description of the solved problem, if it is a benchmark that can be found in literature, insert the link to the reference or, at least a reference). - reference with a link the location in which you describe all the theory behind Numerical approach.

Application Dependencies

Other Kratos Applications used in current application:

Optional:

External libraries

Optional:

Contact

For any question regarding to this application please contact:

Josep Maria Carbonell: cpuigbo@cimne.upc.edu

or post it in the Kratos Forum

Programming Documentation

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