This innovative textbook and online resource package equips students with the tools needed to develop a working knowledge of finite element method theory, and its application in codes and software-based analysis. It builds a distinctive, well-rounded skill set for future careers in industry or research.
This innovative textbook and online resource package equips students with the tools needed to develop a working knowledge of finite element method theory, and its application in codes and software-based analysis. It builds a distinctive, well-rounded skill set for future careers in industry or research.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Prof. Sung W. Lee received his Ph.D. degree from the Massachusetts Institute of Technology. He is currently Professor of Aerospace Engineering at the University of Maryland where he taught courses on the finite element methods and carried out numerous sponsored researches on the finite element modeling of solids and structures. He had served on the editorial advisory boards of such international journals as Computational Mechanics, International Journal for Numerical Methods in Engineering, and Computer Modeling in Engineering and Sciences. He received a lifetime achievement award for his work on computational analysis of shell structures at the 2015 International Conference on Computational and Experimental Engineering and Sciences.
Inhaltsangabe
Preface 1. Introduction to the finite element method 2. Truss, temperature effect and torsion 3. Beams and frames 4. Structural dynamics 5. Bending under axial force 6. Virtual displacement and virtual work 7. Mapping, shape functions and numerical integration 8. Two and three dimensional deformable solid bodies 9. Plates and shells 10. Element locking 11. Heat transfer Appendix 1. Fundamentals of solid and structural mechanics Appendix 2. Solution methods Bibliography Index.
Preface 1. Introduction to the finite element method 2. Truss, temperature effect and torsion 3. Beams and frames 4. Structural dynamics 5. Bending under axial force 6. Virtual displacement and virtual work 7. Mapping, shape functions and numerical integration 8. Two and three dimensional deformable solid bodies 9. Plates and shells 10. Element locking 11. Heat transfer Appendix 1. Fundamentals of solid and structural mechanics Appendix 2. Solution methods Bibliography Index.
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