Skip to main content
Skip header

Introduction to Finite Element Method

Type of study Bachelor
Language of instruction Czech
Code 228-0237/01
Abbreviation ZNKP
Course title Introduction to Finite Element Method
Credits 5
Coordinating department Department of Structural Mechanics
Course coordinator prof. Ing. Jiří Brožovský, Ph.D.

Subject syllabus

- Introduction, theory of elasticity in 3D.
- Energy principles, Ritz method.
- Introduction to Finite Element Method (FEM),
- Finite element for 1D problems.
- Finite element for plane problem.
- Finite element for thin slabs.
- Finite element for solids.
- Isoparametric finite elements - part 1.
- Isoparametric finite elements - part 2.
- FEM in structural dynamics.
- FEM in heat transfer problems.
= FEM in non=linear structural mechanics.
= FEM=based software.

E-learning

Studijní opory k dispozici v IS edison a na lms.vsb.cz

Literature

ZIENKIEWICZ, O. C., Robert L. TAYLOR a J. Z. ZHU. The finite element method: its basis and fundamentals. Seventh edition. Amsterdam: Elsevier, Butterworth-Heinemann, 2013. ISBN 978-1856176330 .

Russell C. Hibbeler, Structural Analysis (10th Edition), 736 pages, 2017, ISBN-13: 978-0134610672 , ISBN-10: 0134610679 .

Advised literature

HUGHES, Thomas J. R. The finite element method: linear static and dynamic finite element analysis. Mineola, NY: Dover Publications, 2000. ISBN 978-0486411811 .

Zienkiewicz, O. C., Taylor, R. L., Zhu: The Finite Element Method: Its Basics and Fundamentals, Butterworth-Heinemann, Burlinghton, 2005