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Nonlinear finite elements: Difference between revisions

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## [[/Partial differential equations|Partial differential equations]]
## [[/Partial differential equations|Partial differential equations]]
## [[/Calculus of variations|Variational calculus]]
## [[/Calculus of variations|Variational calculus]]
#Finite element basics  
#Linear finite element basics  
## [[/Axially loaded bar|An example: Axially loaded bar]]
## [[/Axially loaded bar|An example: Axially loaded bar]]
##* [[/Axial bar strong form|Strong form: governing differential equation]]
##* [[/Axial bar strong form|Strong form: governing differential equation]]
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##* [[/Finite element basis functions|Finite element basis functions]]
##* [[/Finite element basis functions|Finite element basis functions]]
##* [[/Model finite element approximation|Example of a finite element approximation]]
##* [[/Model finite element approximation|Example of a finite element approximation]]
## Weak form of PDEs
## [[/Linear heat equation|A time-dependent problem: the heat equation]]
## Linear time-dependent heat equation
##* [[/Steady state heat conduction|Steady state heat conduction]]
## Finite element basis functions
##* [[/Weak form of Poisson equation|Weak form of the steady state heat equation]]
## Time integration.
##* [[/Weak form of heat equation|Weak form of the time-dependent heat equation]]
##* [[/Solution of Poisson equation|Finite element approximation of Poisson equation]]
##* [[/Solution of heat equation|Finite element approximation of the heat equation]]
##* [[/Heat equation time integration|Time integration of the heat equation]].
#Nonlinear finite element basics
#Nonlinear finite element basics
## Nonlinear heat equation - one dimension
## Nonlinear heat equation - one dimension

Revision as of 19:29, 14 August 2007

Welcome to this learning project about Nonlinear finite elements!

Learning Project Summary

Content summary

This is an introductory course on nonlinear finite element analysis of solid mechanics and heat transfer problems. Nonlinearities can be caused by changes in geometry or be due to nonlinear material behavior. Both types of nonlinearities are covered in this course.

Goals

This learning project aims to.

  • provide the mathematical foundations of the finite element formulation for engineering applications (solids, heat, fluids).
  • expose students to some of the recent trends and research areas in finite elements.

Here's a short quiz to help you find out what you need to brush up on before you dig into the course:

Contents

Syllabus and Learning Materials

  1. Mathematical Preliminaries
    1. Set notation
    2. Functions
    3. Vectors
    4. Matrices
    5. Tensors
    6. Partial differential equations
    7. Variational calculus
  2. Linear finite element basics
    1. An example: Axially loaded bar
    2. More examples: Some model problems
    3. A time-dependent problem: the heat equation
  3. Nonlinear finite element basics
    1. Nonlinear heat equation - one dimension
    2. Basic nonlinear continuum mechanics of solids
    3. Total and updated Lagrangian approaches.
  4. Nonlinear deformation of beams
  5. Nonlinear deformation of plates and shells
    1. Basic linear plate and shell elements
    2. Nonlinear plates and shells
    3. Time-dependent deformation of shells
  6. Nonlinear material behaviors
    1. Material nonlinearities
    2. Objective rates
    3. Nonlinear Elasticity
    4. Plasticity
    5. Viscoplasticity
    6. Viscoelasticity.
  7. Verification and Validation.

Readings and other resources

Find more information on Nonlinear finite elements by searching Wikademia's sister projects
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Dictionary definitions from Wiktionary
Textbooks from Wikibooks
Quotations from Wikiquote
Source texts from Wikisource
Images and media from Commons
News stories from Wikinews


Textbooks

References

Reading List

Each project/lesson/activity may have a suggested reading selection, eg:

  • Wikipedia article:
  • Wikibooks textbook:
  • etc.

Lessons

  • Lesson 1: ...

Activities

  • Activity 1.
  • etc.

Assignments

Tests and Quizzes

  • Quiz 1
  • Quiz 2
  • Test 1
  • etc.

Subpages

Subpages can be created - like /concepts (for concepts involved in this learning project)


Active participants

Active participants in this Learning Group

  • ...


Learning materials and learning projects are located in the main Wikiversity namespace. Simply make a link to the name of the lesson (lessons are independent pages in the main namespace) and start writing!

You should also read about the Wikiversity:Learning model. Lessons should center on learning activities for Wikiversity participants. Learning materials and learning projects can be used by multiple projects - and you are encouraged to cooperate with other departments that use the same learning resource.