Nonlinear finite elements: Difference between revisions
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Revision as of 07:39, 1 June 2008

Welcome to this learning project about nonlinear finite elements!
Introduction
Finite element analysis (FEA) is a computer simulation technique used in engineering analysis. It uses a numerical technique called the finite element method (FEM). There are many finite element software packages, both free and proprietary. Development of the finite element method in structural mechanics is usually based on an energy principle such as the virtual work principle or the minimum total potential energy principle. *
Project metadata
| Completion status: this resource has reached a high level of completion. |
| Educational level: this is a tertiary (university) resource. |
| Subject classification: this is an engineering resource . |
- Suggested Prerequisites:
- Time investment: 6 months
- Portal:Engineering and Technology
- School:Engineering
- Department:Mechanical engineering
- Level: First year graduate
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
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Textbooks and References
Textbooks
References
Reading List
External links
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- Completed resources
- Tertiary Education
- Engineering
- Articles with related material on Wikipedia
- Articles with related material on Wikiquote
- Articles with related material on Wikisource
- Articles with links to related material on Wikinews
- Finite element analysis
- Computational solid mechanics
- Computational mechanics
- Solid mechanics
- Applied Mechanics
- Mechanical engineering
- Civil engineering
- Introductions
- Courses
