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Nonlinear diffusion of electromagnetic fields with applications to eddy currents and superconductivity
Title:
Nonlinear diffusion of electromagnetic fields with applications to eddy currents and superconductivity
Author:
Mayergoyz, I. D.
ISBN:
9780124808706
Personal Author:
Publication Information:
San Diego : Academic Press, c1998.
Physical Description:
xiv, 412 p. : ill. ; 24 cm.
Series:
Electromagnetism
Series Title:
Electromagnetism
Contents:
Diffusion of Electromagnetic Fields in Magnetically Nonlinear Conducting Media (Linear Polarization). Diffusion of Electromagnetic Fields in Magnetically Nonlinear Conducting Media (Vector Polarization). Nonlinear Diffusion ofWeak Magnetic Fields. Nonlinear Diffusion in Superconductors. Nonlinear Impedance Boundary Conditions and Their Application to the Solution of Eddy Current Problems. Subject Index.
Abstract:
Nonlinear Diffusion of Electromagnetic Fields covers applications of the phenomena of non-linear diffusion of electromagnetic fields, such as magnetic recording, electromagnetic shielding and non-destructive testing, development of CAD software, and the design of magnetic components in electrical machinery. The material presented has direct applications to the analysis of eddy currents in magnetically nonlinear and hysteretic conductors and to the study of magnetization processes in electrically nonlinear superconductors. This book will provide very valuable technical and scientific information to a broad audience of engineers and researchers who are involved in these diverse areas. Key Features * Contains extensive use of analytical techniques for the solution of nonlinear problems of electromagnetic field diffusion * Simple analytical formulas for surface impedances of nonlinear and hysteretic media * Analysis of nonlinear diffusion for linear, circular and elliptical polarizations of electromagnetic fields * Novel and extensive analysis of eddy current losses in steel laminations for unidirectional and rotating magnetic fields * Preisach approach to the modeling of eddy current hysteresis and superconducting hysteresis * Extensive study of nonlinear diffusion in superconductors with gradual resistive transitions (scalar and vertorial problems).
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