The Finite Element Method: Its Basis and Fundamentals
Autor O. C. Zienkiewicz, Rl Tayloren Limba Engleză Hardback – 2 oct 2013
This edition sees a significant rearrangement of the book’s content to enable clearer development of the finite element method, with major new chapters and sections added to cover:
- Weak forms
- Variational forms
- Multi-dimensional field problems
- Automatic mesh generation
- Plate bending and shells
- Developments in meshless techniques
- A proven keystone reference in the library of any engineer needing to understand and apply the finite element method in design and development
- Founded by an influential pioneer in the field and updated in this seventh edition by an author team incorporating academic authority and industrial simulation experience
- Features reworked and reordered contents for clearer development of the theory, plus new chapters and sections on mesh generation, plate bending, shells, weak forms and variational forms
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Specificații
ISBN-13: 9781856176330
ISBN-10: 1856176339
Pagini: 756
Dimensiuni: 191 x 235 x 33 mm
Greutate: 1.41 kg
Ediția:Revised
Editura: ELSEVIER SCIENCE
ISBN-10: 1856176339
Pagini: 756
Dimensiuni: 191 x 235 x 33 mm
Greutate: 1.41 kg
Ediția:Revised
Editura: ELSEVIER SCIENCE
Public țintă
Mechanical, Civil and Electrical Engineers, applied mathematicians and computer aided engineering software developersCuprins
Some Preliminaries: The Standard Discrete System; A Direct Physical Approach to Problems in Elasticity; Generalization of the Finite Element Concepts; Galerkin-Weighted Residual and Variational Approaches; 'Standard’ and ‘hierarchical’ Element Shape Functions: Some General Families of Continuity; Mapped Elements and Numerical Integration – ‘Infinite’ and ‘Singularity’ Elements; Two Dimensional Problems in Plane Stress, Plane Strain and Axisymmetric Elasticity; Steady-State Field Problems; Three-Dimensional Elasticity and Field Problems; Mesh Generation; The Patch Test; Mixed Formulation and Constraints – Complete Field Methods; Incompressible Materials; Mixed Formulation and Constraints; Errors, Recovery Processes and Error Estimates; Adaptive Finite Element Refinement; Point-Based Approximations – Meshless Methods; The Time Dimension – Semi-discretization of Field and Dynamic Problems and Analytical Solution Procedures; The Time Dimension – Discrete Approximation in Time; Coupled Systems; Computer Procedures for Finite Element Analysis; Matrix Algebra; Tensor-Indicial Notation in the Approximation of Elasticity Problems; Basic Equations of Displacement Analysis; Some Integration Formulae for a Triangle; Some Integration Formulae for a Tetrahedron; Some Vector Algebra; Integration by Parts in Two and Three Dimensions (Green’s Theorem); Solutions Exact at Nodes; Matrix Diagonalization or Lumping
Recenzii
"...this is a book that you simply cannot afford to be without." --INTERNATIONAL JOURNAL OF NUMERICAL METHODS IN ENGINEERING