Boundary Element Methods in Heat Transfer

Author:   L. C. Wrobel ,  C. A. Brebbia (Wessex Institut of Technology)
Publisher:   Kluwer Academic Publishers Group
ISBN:  

9781851667260


Pages:   306
Publication Date:   April 1992
Format:   Hardback
Availability:   Out of stock   Availability explained
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Boundary Element Methods in Heat Transfer


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Overview

Heat transfer problems in industry are usually of a very complex nature, simultaneously involving different transfer modes such as conduction, convection, radiation and others. Because of this, very few problems can be solved analytically and one generally has to resort to numerical analysis. The boundary element method is a numerical technique which has been receiving growing attention for solving heat transfer problems because of its unique ability to confine the discretization process to the boundaries of the problem region. This allows major reductions in the data preparation and computer effort necessary to solve complex industrial problems. The purpose of this book is to present efficient algorithms used in conjunction with the boundary element method for the solution of steady and transient, linear and non-linear heat transfer problems. It represents the state-of-the-art of boundary element applications in the field of heat transfer, and constitutes essential reading for researchers and practising engineers involved with this important topic.

Full Product Details

Author:   L. C. Wrobel ,  C. A. Brebbia (Wessex Institut of Technology)
Publisher:   Kluwer Academic Publishers Group
Imprint:   Kluwer Academic Publishers
Weight:   0.640kg
ISBN:  

9781851667260


ISBN 10:   1851667261
Pages:   306
Publication Date:   April 1992
Audience:   College/higher education ,  Professional and scholarly ,  Undergraduate ,  Postgraduate, Research & Scholarly
Format:   Hardback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

Table of Contents

Preface. Solving heat transfer problems by the dual reciprocity BEM. Transient problems using time-dependent fundamental solutions. Solving linear heat conduction problems by the multiple reciprocity method. Solving nonlinear heat transfer problems using the boundary element method. Coupled conduction-convection problems. Solving coupled problems involving conduction, convection and thermal radiation. Advanced thermoelastic analysis. Integral equation analyses of natural convection problems in fluid flow. Improperly posed problems in heat transfer. Acknowledgments. References.

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