Untertitel:
Applications in Solids and Structures
Autor:
L. C. Wrobel, Aliabadi M. H.
Herausgeber:
Wiley-Blackwell
Erscheinungsdatum:
24.04.2002
Klappentext The boundary element method (BEM) is a modern numerical technique! which has enjoyed increasing popularity over the last two decades! and is now an established alternative to traditional computational methods of engineering analysis. The main advantage of the BEM is its unique ability to provide a complete solution in terms of boundary values only! with substantial savings in modelling effort.This two volume book set is designed to provide the readers with a comprehensive and up-to-date account of the boundary element method and its application to solving engineering problems. Each volume is a self-contained book including a substantial amount of material not previously covered by other text books on the subject. Volume 1 covers applications to heat transfer! acoustics! electrochemistry and fluid mechanics problems! while volume 2 concentrates on solids and structures! describing applications to elasticity! plasticity! elastodynamics! fracture mechanics and contact analysis. The early chapters are designed as a teaching text for final year undergraduate courses. Both volumes reflect the experience of the authors over a period of more than twenty years of boundary element research. Zusammenfassung The boundary element method (BEM) is a well-established numerical technique. Along with its companion volume, this book provides a comprehensive presentation of the BEM from fundamentals to advanced engineering applications. Inhaltsverzeichnis VOLUME 1Introduction.Potential ProblemsSteady Heat TransferTransient Heat TransferAcousticsElectrochemical ProblemsFlow of Ideal FluidsSlow Viscous FlowGeneral Viscous FlowInverse ProblemsNumerical IntegrationVOLUME 2IntroductionElastostaticsPlates and ShellsThermoelasticityElastodynamicsElastoplasticityContact MechanicsFracture MechanicsSensitivity Analysis and Shape OptimizationAssembled StructuresNumerical IntegrationA Complex Stress FunctionsB Limiting Process for Boundary Stress EquationC The Limits and Jump TermsD Particular SolutionsE Convoluted Fundamental SolutionsF Shape Functions of Brick Cell elementsG Fast Solver ...
Klappentext
The boundary element method (BEM) is a modern numerical technique, which has enjoyed increasing popularity over the last two decades, and is now an established alternative to traditional computational methods of engineering analysis. The main advantage of the BEM is its unique ability to provide a complete solution in terms of boundary values only, with substantial savings in modelling effort. This two volume book set is designed to provide the readers with a comprehensive and up-to-date account of the boundary element method and its application to solving engineering problems. Each volume is a self-contained book including a substantial amount of material not previously covered by other text books on the subject. Volume 1 covers applications to heat transfer, acoustics, electrochemistry and fluid mechanics problems, while volume 2 concentrates on solids and structures, describing applications to elasticity, plasticity, elastodynamics, fracture mechanics and contact analysis. The early chapters are designed as a teaching text for final year undergraduate courses. Both volumes reflect the experience of the authors over a period of more than twenty years of boundary element research.
Zusammenfassung
The boundary element method (BEM) is a well-established numerical technique. Along with its companion volume, this book provides a comprehensive presentation of the BEM from fundamentals to advanced engineering applications.
Inhalt
VOLUME 1 Introduction. Potential Problems Steady Heat Transfer Transient Heat Transfer Acoustics Electrochemical Problems Flow of Ideal Fluids Slow Viscous Flow General Viscous Flow Inverse Problems Numerical Integration VOLUME 2 Introduction Elastostatics Plates and Shells Thermoelasticity Elastodynamics Elastoplasticity Contact Mechanics Fracture Mechanics Sensitivity Analysis and Shape Optimization Assembled Structures Numerical Integration A Complex Stress Functions B Limiting Process for Boundary Stress Equation C The Limits and Jump Terms D Particular Solutions E Convoluted Fundamental Solutions F Shape Functions of Brick Cell elements G Fast Solver
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