9780198565048-0198565046-Finite Element Methods in Electrical Power Engineering

Finite Element Methods in Electrical Power Engineering

ISBN-13: 9780198565048
ISBN-10: 0198565046
Edition: 1
Author: A. B. J. Reece, T. W. Preston
Publication date: 2000
Publisher: Oxford University Press
Format: Hardcover 312 pages
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Book details

ISBN-13: 9780198565048
ISBN-10: 0198565046
Edition: 1
Author: A. B. J. Reece, T. W. Preston
Publication date: 2000
Publisher: Oxford University Press
Format: Hardcover 312 pages

Summary

Finite Element Methods in Electrical Power Engineering (ISBN-13: 9780198565048 and ISBN-10: 0198565046), written by authors A. B. J. Reece, T. W. Preston, was published by Oxford University Press in 2000. With an overall rating of 3.9 stars, it's a notable title among other Electrical & Electronics (Engineering, Linguistics, Words, Language & Grammar ) books. You can easily purchase or rent Finite Element Methods in Electrical Power Engineering (Hardcover) from BooksRun, along with many other new and used Electrical & Electronics books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

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 3 parts; theory, modelling and application of the finite element method. The first section dealing with the theory of finite elements contains all the necessary mathematical formulations to develop the method but is written in a manner to give the reader a physical/engineering understanding behind the technique. The second section deals mainly with modelling aspects, such as the treatment of boundary conditions, end effects, non-linear material and permanent magnets etc. In all cases reference is made to their use in the solution of 'real' engineering problems. Finally, the third part is a collection of problems solved by finite elements including application to turbine generations, d.c. machines, switch reluctance drives, induction motors, transformers, bushing and overhead lines.

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