The authors give a unified treatment of nonlinear solid mechanics, dynamic conservation laws, and the associated finite element techniques, alongside exercises, examples, and working code, to provide a self-contained introduction to the dynamic simulation of nonlinear solids suitable for beginning masters and PhD students.
The authors give a unified treatment of nonlinear solid mechanics, dynamic conservation laws, and the associated finite element techniques, alongside exercises, examples, and working code, to provide a self-contained introduction to the dynamic simulation of nonlinear solids suitable for beginning masters and PhD students.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Javier Bonet is a Professor of Engineering, currently Deputy Vice-chancellor for Research and Enterprise at the University of Greenwich and formerly Head of the College of Engineering at Swansea University. He has extensive experience of teaching topics in structural mechanics and dynamics, including large strain nonlinear solid mechanics, to undergraduate and graduate engineering students. He has been active in research in the area of computational mechanics for over 30 years with contributions in modeling superplastic forming, large strain solid dynamic analysis, membrane modeling, finite element technology including error estimation and meshless methods (smooth particle hydrodynamics). He has given invited, keynote, and plenary lectures on these topics at numerous international conferences.
Inhaltsangabe
1. Introduction 2. Dynamic analysis of 3-D trusses 3. Dynamic equilibrium of deformable solids 4. Discretization and solution 5. Conservation laws in solid dynamics 6. Thermodynamics 7. Space and time discretization of conservation laws in solid dynamics 8. Computer implementation for displacement-based dynamics 9. Computational implementation for conservation-law-based explicit fast dynamics Appendix. Shocks Bibliography Index.
1. Introduction 2. Dynamic analysis of 3-D trusses 3. Dynamic equilibrium of deformable solids 4. Discretization and solution 5. Conservation laws in solid dynamics 6. Thermodynamics 7. Space and time discretization of conservation laws in solid dynamics 8. Computer implementation for displacement-based dynamics 9. Computational implementation for conservation-law-based explicit fast dynamics Appendix. Shocks Bibliography Index.
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