Magnetic materials and 3D finite element modeling
著者
書誌事項
Magnetic materials and 3D finite element modeling
CRC Press, Taylor & Francis Group, c2014
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注記
Includes bibliographical references and index
内容説明・目次
内容説明
Magnetic Materials and 3D Finite Element Modeling explores material characterization and finite element modeling (FEM) applications. This book relates to electromagnetic analysis based on Maxwell's equations and application of the finite element (FE) method to low frequency devices. A great source for senior undergraduate and graduate students in electromagnetics, it also supports industry professionals working in magnetics, electromagnetics, ferromagnetic materials science and electrical engineering.
The authors present current concepts on ferromagnetic material characterizations and losses. They provide introductory material; highlight basic electromagnetics, present experimental and numerical modeling related to losses and focus on FEM applied to 3D applications. They also explain various formulations, and discuss numerical codes.
* Furnishes algorithms in computational language
* Summarizes concepts related to the FE method
* Uses classical algebra to present the method, making it easily accessible to engineers
Written in an easy-to-understand tutorial format, the text begins with a short presentation of Maxwell's equations, discusses the generation mechanism of iron losses, and introduces their static and dynamic components. It then demonstrates simplified models for the hysteresis phenomena under alternating magnetic fields. The book also focuses on the Preisach and Jiles-Atherton models, discusses vector hysterisis modeling, introduces the FE technique, and presents nodal and edge elements applied to 3D FE formulation connected to the hysteretic phenomena.
The book discusses the concept of source-field for magnetostatic cases, magnetodynamic fields, eddy currents, and anisotropy. It also explores the need for more sophisticated coding, and presents techniques for solving linear systems generated by the FE cases while considering advantages and drawbacks.
目次
Statics and Quasistatics Electromagnetics: Brief Presentation. Ferromagnetic Materials and Iron Losses. Scalar Hysteresis Modeling. Vector Hysteresis Modeling. Finite Element Method: Brief Presentation. Using Nodal Elements with Magnetic Vector Potential. Source-Field Method for D Magnetostatic Fields. Source-Field Method for D Magnetodynamic Fields. Matrix-Free Iterative Solution Procedure for Finite Element Problems. References. Index.
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