Finite element analysis for design engineers:
Front Cover -- Title Page -- Copyright Page -- Contents -- Preface -- CHAPTER 1 Introduction -- 1.1. What Is Finite Element Analysis? -- 1.2. What Is the Place of FEA among Other Tools of Computer-Aided Engineering? -- 1.3. Fields of Application of FEA and Mechanism Analysis -- 1.4. Fields of Applic...
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Warrendale
SAE International
2022
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Ausgabe: | 3rd ed. |
Schlagworte: | |
Online-Zugang: | DE-706 |
Zusammenfassung: | Front Cover -- Title Page -- Copyright Page -- Contents -- Preface -- CHAPTER 1 Introduction -- 1.1. What Is Finite Element Analysis? -- 1.2. What Is the Place of FEA among Other Tools of Computer-Aided Engineering? -- 1.3. Fields of Application of FEA and Mechanism Analysis -- 1.4. Fields of Application of FEA and CFD -- 1.5. What Is "FEA for Design Engineers"? -- 1.6. Note on Hands-On Exercises -- CHAPTER 2 From CAD Model to Results of FEA -- 2.1. Formulation of the Mathematical Model -- 2.2. Selecting the Numerical Method to Solve the Mathematical Model -- 2.2.1. Selected Numerical Methods in CAE -- 2.2.2. Reasons for the Dominance of FEM -- 2.3. FEA Model -- 2.3.1. Meshing -- 2.3.2. Formulation of FE Equations -- 2.3.3. Errors in FEA Results -- 2.4. Verification and Validation of FEA Results -- CHAPTER 3 Fundamental Concepts of FEA -- 3.1. Formulation of a Finite Element -- 3.1.1. Closer Look at Finite Element -- 3.1.2. Requirements to be Satisfied by Displacement Interpolation Function -- 3.1.3. Artificial Restraints -- 3.2. Choices of Discretization -- 3.3. Types of Finite Elements -- 3.3.1. Element Dimensionality -- 3.3.2. Element Shape -- 3.3.3. Element Order and Element Type -- 3.3.4. Summary of Commonly Used Elements -- 3.3.5. Element Modeling Capabilities -- CHAPTER 4 Controlling Discretization Errors -- 4.1. Presenting Stress Results -- 4.2. Types of Convergence Analysis -- 4.2.1. h Convergence by Global Mesh Refinement -- 4.2.2. h Convergence by Local Mesh Refinement -- 4.2.3. Adaptive h Convergence -- 4.2.4. p Convergence Process -- 4.2.5. Choice of Convergence Process -- 4.3. Discretization Error -- 4.3.1. Convergence Error -- 4.3.2. Solution Error -- 4.4. Problems with Convergence -- 4.4.1. Stress Singularity -- 4.4.2. Displacement Singularity -- 4.5. Hands-On Exercises -- 4.5.1. HOLLOW PLATE -- Description -- Objective. |
Beschreibung: | 1 Online-Ressource (287 Seiten) |
ISBN: | 9781468605365 |
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520 | 3 | |a Front Cover -- Title Page -- Copyright Page -- Contents -- Preface -- CHAPTER 1 Introduction -- 1.1. What Is Finite Element Analysis? -- 1.2. What Is the Place of FEA among Other Tools of Computer-Aided Engineering? -- 1.3. Fields of Application of FEA and Mechanism Analysis -- 1.4. Fields of Application of FEA and CFD -- 1.5. What Is "FEA for Design Engineers"? -- 1.6. Note on Hands-On Exercises -- CHAPTER 2 From CAD Model to Results of FEA -- 2.1. Formulation of the Mathematical Model -- 2.2. Selecting the Numerical Method to Solve the Mathematical Model -- 2.2.1. Selected Numerical Methods in CAE -- 2.2.2. Reasons for the Dominance of FEM -- 2.3. FEA Model -- 2.3.1. Meshing -- 2.3.2. Formulation of FE Equations -- 2.3.3. Errors in FEA Results -- 2.4. Verification and Validation of FEA Results -- CHAPTER 3 Fundamental Concepts of FEA -- 3.1. Formulation of a Finite Element -- 3.1.1. Closer Look at Finite Element -- 3.1.2. Requirements to be Satisfied by Displacement Interpolation Function -- 3.1.3. Artificial Restraints -- 3.2. Choices of Discretization -- 3.3. Types of Finite Elements -- 3.3.1. Element Dimensionality -- 3.3.2. Element Shape -- 3.3.3. Element Order and Element Type -- 3.3.4. Summary of Commonly Used Elements -- 3.3.5. Element Modeling Capabilities -- CHAPTER 4 Controlling Discretization Errors -- 4.1. Presenting Stress Results -- 4.2. Types of Convergence Analysis -- 4.2.1. h Convergence by Global Mesh Refinement -- 4.2.2. h Convergence by Local Mesh Refinement -- 4.2.3. Adaptive h Convergence -- 4.2.4. p Convergence Process -- 4.2.5. Choice of Convergence Process -- 4.3. Discretization Error -- 4.3.1. Convergence Error -- 4.3.2. Solution Error -- 4.4. Problems with Convergence -- 4.4.1. Stress Singularity -- 4.4.2. Displacement Singularity -- 4.5. Hands-On Exercises -- 4.5.1. HOLLOW PLATE -- Description -- Objective. | |
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Datensatz im Suchindex
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author | Kurowski, Paul M. |
author_facet | Kurowski, Paul M. |
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author_sort | Kurowski, Paul M. |
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dewey-tens | 620 - Engineering and allied operations |
edition | 3rd ed. |
format | Electronic eBook |
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isbn | 9781468605365 |
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spelling | Kurowski, Paul M. Verfasser aut Finite element analysis for design engineers 3rd ed. Warrendale SAE International 2022 1 Online-Ressource (287 Seiten) txt rdacontent c rdamedia cr rdacarrier Front Cover -- Title Page -- Copyright Page -- Contents -- Preface -- CHAPTER 1 Introduction -- 1.1. What Is Finite Element Analysis? -- 1.2. What Is the Place of FEA among Other Tools of Computer-Aided Engineering? -- 1.3. Fields of Application of FEA and Mechanism Analysis -- 1.4. Fields of Application of FEA and CFD -- 1.5. What Is "FEA for Design Engineers"? -- 1.6. Note on Hands-On Exercises -- CHAPTER 2 From CAD Model to Results of FEA -- 2.1. Formulation of the Mathematical Model -- 2.2. Selecting the Numerical Method to Solve the Mathematical Model -- 2.2.1. Selected Numerical Methods in CAE -- 2.2.2. Reasons for the Dominance of FEM -- 2.3. FEA Model -- 2.3.1. Meshing -- 2.3.2. Formulation of FE Equations -- 2.3.3. Errors in FEA Results -- 2.4. Verification and Validation of FEA Results -- CHAPTER 3 Fundamental Concepts of FEA -- 3.1. Formulation of a Finite Element -- 3.1.1. Closer Look at Finite Element -- 3.1.2. Requirements to be Satisfied by Displacement Interpolation Function -- 3.1.3. Artificial Restraints -- 3.2. Choices of Discretization -- 3.3. Types of Finite Elements -- 3.3.1. Element Dimensionality -- 3.3.2. Element Shape -- 3.3.3. Element Order and Element Type -- 3.3.4. Summary of Commonly Used Elements -- 3.3.5. Element Modeling Capabilities -- CHAPTER 4 Controlling Discretization Errors -- 4.1. Presenting Stress Results -- 4.2. Types of Convergence Analysis -- 4.2.1. h Convergence by Global Mesh Refinement -- 4.2.2. h Convergence by Local Mesh Refinement -- 4.2.3. Adaptive h Convergence -- 4.2.4. p Convergence Process -- 4.2.5. Choice of Convergence Process -- 4.3. Discretization Error -- 4.3.1. Convergence Error -- 4.3.2. Solution Error -- 4.4. Problems with Convergence -- 4.4.1. Stress Singularity -- 4.4.2. Displacement Singularity -- 4.5. Hands-On Exercises -- 4.5.1. HOLLOW PLATE -- Description -- Objective. Electronic books Erscheint auch als Druck-Ausgabe 9780768011401 |
spellingShingle | Kurowski, Paul M. Finite element analysis for design engineers |
title | Finite element analysis for design engineers |
title_auth | Finite element analysis for design engineers |
title_exact_search | Finite element analysis for design engineers |
title_full | Finite element analysis for design engineers |
title_fullStr | Finite element analysis for design engineers |
title_full_unstemmed | Finite element analysis for design engineers |
title_short | Finite element analysis for design engineers |
title_sort | finite element analysis for design engineers |
work_keys_str_mv | AT kurowskipaulm finiteelementanalysisfordesignengineers |