Finite Element Methods in Electrical Power Engineering
Series: Monographs in Electrical and Electronic Engineering; 46;
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114 003 Ft
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Product details:
- Publisher OUP Oxford
- Date of Publication 13 April 2000
- Number of Volumes laminated boards
- ISBN 9780198565048
- Binding Hardback
- No. of pages312 pages
- Size 241x162x22 mm
- Weight 673 g
- Language English
- Illustrations 1 halftone, numerous line figures 0
Categories
Short description:
The book provides an outline of relevant electromagnetics and finite element basics, followed by a discussion of the principles of modelling electrical power equipment. It gives many examples of the use of finite element methods to aid designers of electrical machines, transformers, and high voltage equipment, based on the authors' industrial experience. The main aim of the book is to give the reader a physical rather than mathematical understanding behind the inite element method. This is supported by a detailed description of modelling techniques to enable an accurate solution to be obtained with minimum cost and effort.
MoreLong description:
This book is designed to give the theoretical foundation needed by the new user of finite elements in electrical power engineering, and shows how the equipment designer can benefit from finite element analysis. It is divided into three parts; theory, modelling,and application of the finite element method. The first part outlines relevant electromagnetics, including treatment of boundaries, saturation and permanent magnets. It also shows how the finite element equations can be formulated. The presentation throughout is aimed at giving the reader a physical understanding of the process. The second part deals with special aspects of finite element modelling of engineering problems, including problem formulation, data generation and post processing and emphasises the importance of engineering judgement. The final part is an assembly of 'real' magnetic and electric field problems solved by finite elements, including application to turbine generators, permanent magnet machines, switched reluctance drives, induction motors, transformers and bushings.
Albert Reece and Tom Preston have been leading and able members of this army. The encapsulation of their long experience is much to be welcomed