The Finite Element Method For Engineers, 4Th Ed

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Author: Kenneth H. Huebner

Language: English

Page: 742

Edition:

This text is a revision of an introduction to the finite element method, offering a balanced treatment of theory, examples and applications emphasizing mechanics (forces, stresses, displacements, vibrations), heat transfer, elasticity and multi-physics problems (fluid flow, electromagnetic behavior). This book has an unusual mix of authors (from both industry and academia) for a main stream engineering book which makes it more applied than the competition. With applications and examples, the text explains how the finite element method can be applied to numerous and diverse areas of mechanics problems and analysis. The finite element method is a standard area of study at most universities and this book is a useful and reliable tool for students and practitioners alike. Special Features Applies FEM to a wide range of mechanics problems used in real-world and classroom-based scenarios Content is basic in level and is organized to be taught in either two semesters or two quarters Table of Content Part I Meet the Finite Element Method The Direct Approach: A Physical Interpretation The Mathematical Approach: A Generalized Interpretation Part II Elasticity Problems General Field Problems Heat Transfer Problems Fluid Mechanics Problems Boundary Conditions, Mesh Generation, and Other Practical Considerations Appendix A: Matrices Appendix B: Variational Calculus Appendix C: Basic Equations from Linear Elasticity Theory Appendix D: Basic Equations from Fluid Mechanics Appendix E: Basic Equations from Heat Transfer References Index

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