heat transfer summary
TRANSCRIPT
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Heat Transfer and Thermal-Stress
Analysis with Abaqus
Heat Transfer and Thermal-Stress Analysis with Abaqus
Day 1
• Lecture 1: Introduction to Heat Transfer
• Lecture 2: Material Properties and Element Technology
• Workshop 1: Reactor: Properties and Elements
• Lecture 3: Thermal Analysis Procedures
• Workshop 2: Reactor: Analysis Procedures
• Lecture 4: Thermal Loads and Boundary Conditions
• Workshop 3: Reactor: Loads and Boundary Conditions
• Lecture 5: Thermal Interfaces
• Workshop 4: Reactor: Thermal Contact and Analysis
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Heat Transfer and Thermal-Stress Analysis with Abaqus
Day 2
• Lecture 6: Thermal-Stress Analysis
• Lecture 7: Sequentially Coupled Thermal-Stress Analysis
• Workshop 5: Reactor: Stress Response
• Lecture 8: Fully Coupled Thermal-Stress Analysis
• Workshop 6: Disc Brake Analysis
• Lecture 9: Adiabatic Analysis
Heat Transfer and Thermal-Stress Analysis with Abaqus
Additional Material
• Appendix 1 Heat Transfer Theory
• Appendix 2 Forced Convection
• Workshop 7: Continuous Casting
• Appendix 3 Cavity Radiation
• Workshop 8: Radiation in a Finned Surface
• Appendix 4 Thermal Fatigue
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Heat Transfer and Thermal-Stress Analysis with Abaqus
Legal Notices
The Abaqus Software described in this documentation is available only under license from
Dassault Systèmes and its subsidiary and may be used or reproduced only in accordance with the
terms of such license.
This documentation and the software described in this documentation are subject to change
without prior notice.
Dassault Systèmes and its subsidiaries shall not be responsible for the consequences of any
errors or omissions that may appear in this documentation.
No part of this documentation may be reproduced or distributed in any form without prior written
permission of Dassault Systèmes or its subsidiary.
© Dassault Systèmes, 2010.
Printed in the United States of America
Abaqus, the 3DS logo, SIMULIA and CATIA are trademarks or registered trademarks of Dassault
Systèmes or its subsidiaries in the US and/or other countries.
Other company, product, and service names may be trademarks or service marks of their
respective owners. For additional information concerning trademarks, copyrights, and licenses,
see the Legal Notices in the Abaqus 6.10 Release Notes and the notices at:
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Heat Transfer and Thermal-Stress Analysis with Abaqus
Revision Status
Lecture 1 5/10 Updated for 6.10
Lecture 2 5/10 Updated for 6.10
Lecture 3 5/10 Updated for 6.10
Lecture 4 5/10 Updated for 6.10
Lecture 5 5/10 Updated for 6.10
Lecture 6 5/10 Updated for 6.10
Lecture 7 5/10 Updated for 6.10
Lecture 8 5/10 Updated for 6.10
Lecture 9 5/10 Updated for 6.10
Appendix 1 5/10 Updated for 6.10
Appendix 2 5/10 Updated for 6.10
Appendix 3 5/10 Updated for 6.10
Appendix 4 5/10 Updated for 6.10
Workshop 1 5/10 Updated for 6.10
Workshop 2 5/10 Updated for 6.10
Workshop 3 5/10 Updated for 6.10
Workshop 4 5/10 Updated for 6.10
Workshop 5 5/10 Updated for 6.10
Workshop 6 5/10 Updated for 6.10
Workshop 7 5/10 Updated for 6.10
Workshop 8 5/10 Updated for 6.10
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Introduction to Heat Transfer
Lecture 1
L1.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Introduction
• Heat Transfer Basics
• Heat Transfer in Abaqus
• Heat Transfer Features in Abaqus
• Examples
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Material Properties and
Element Technology
Lecture 2
L2.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Thermal Material Properties
• Heat Transfer Element Library
• Workshop
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Thermal Analysis Procedures
Lecture 3
L3.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Steady-State Analysis
• Transient Analysis
• Nonlinear Analysis
• Output
• Workshop
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Thermal Boundary Conditions and Loads
Lecture 4
L4.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Overview
• Prescribed Temperatures
• Prescribed Fluxes
• Film Conditions
• Radiation to the Ambient
• Natural Boundary Condition
• Initial Conditions
• Workshop
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Thermal Interfaces
Lecture 5
L5.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Thermal "Contact"
• Introduction: Heat Transfer Across Interfaces
• Thermal Interaction Usage
• Gap Conduction
• Gap Radiation
• Workshop
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Thermal-Stress Analysis
Lecture 6
L6.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Analogy Between Heat Transfer and Stress Analysis
• Thermal-Stress Procedures
• Element Selection
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Sequentially-Coupled
Thermal-Stress Analysis
Lecture 7
L7.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Sequentially Coupled Analysis
• Thermal-Stress Modeling Considerations
• Example
• Methods for Assigning Temperature Data
• Direct
• User subroutine
• Output database/results file
• Temperature Application for Solid Elements
• Temperature Application for Shell Elements
• Temperature Application for Beam Elements
• Summary
• Workshop
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Fully Coupled Thermal-Stress Analysis
Lecture 8
L8.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Full Temperature-Displacement Coupling
• Element Selection
• Contact Interaction
• Examples of Fully Coupled Analyses
• Rigid Bodies in Thermal-Stress Analysis
• Heat Transfer Analysis with Abaqus/Explicit
• Workshop
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Adiabatic Analysis
Lecture 9
L9.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Adiabatic Analysis
• Adiabatic Analysis Examples
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Heat Transfer Theory
Appendix 1
A1.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Summary of Governing Equations for Conduction
• Constitutive Relation—Fourier's Law
• Thermal Energy Balance—Differential Form
• Thermal Energy Balance—Equivalent Variational Form
• Finite Element Approximation
• Transient Analysis
• Eulerian Formulation for Convection
• Thermal Radiation Formulation
• Adiabatic Thermal-Stress Analysis
• Nonlinear Solution Scheme
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Forced Convection
Appendix 2
A2.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Example: 1-D Convective Heat Transfer
• Stabilization
• Convective/Diffusive Element Library
• Abaqus Usage
• Workshop
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Cavity Radiation
Appendix 3
A3.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Thermal Radiation
• Cavity Radiation
• Fully Implicit Cavity Radiation Approach
• Open vs. Closed Cavities
• Cavity Radiation and Viewfactor Calculations
• Radiation Symmetry
• Radiation Motion
• Cavity Radiation Output
• Approximate Cavity Radiation Approach
• Workshop
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Thermal Fatigue
Appendix 4
A4.2
Heat Transfer and Thermal-Stress Analysis with Abaqus
Overview
• Thermal Fatigue
• Example