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Practical design of magnetostatic structure using numerical simulation

Covers the practical numerical method for the analysis and design of magnets Extensively covers the magnet design and computation aspects from theories to practical applications, emphasizing design methods of practical structures such as superconducting, electromagnetic and permanent magnet for us...

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Autor principal: Wang, Qiuliang
Lenguaje:eng
Publicado: Wiley 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1002/9781118398159
http://cds.cern.ch/record/1529965
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author Wang, Qiuliang
author_facet Wang, Qiuliang
author_sort Wang, Qiuliang
collection CERN
description Covers the practical numerical method for the analysis and design of magnets Extensively covers the magnet design and computation aspects from theories to practical applications, emphasizing design methods of practical structures such as superconducting, electromagnetic and permanent magnet for use in various scientific instruments, industrial processing, biomedicine and special electrical equipments. The computations cover a wide range of numerical techniques and analytical derivation to efficiently provide solutions to complicated problems that are often encountered in practice, where simple analytical calculations are no longer adequate. Chapters include: Introduction of Magnet Technology, Magnetostatic Equation for the Magnet Structure, Finite Element Analysis for Magnetostatic Field, Integral Method for Magnetostatic Field, Numerical Method of Solenoid Coils Design, Series Analysis of Axially Symmetric Magnetic Field, Magnets with High Magnetic Field and High Homogeneity, Permanent Magnet and its Applications, Shimming Magnetic Field with Optimal Magnet Structure, Electro-Mechanical Effect of Magnet, Calculation Formula of Magnetic Field Vector/Recurrence Formula of Legendre Function/Magnetization Equation in Cylindrical Coordinate System. * Presents a clear introduction to magnet technology, followed by basic theories, numerical analysis and practical applications * Emphasizes the latest developments in magnet design, including MRI systems, and provides comprehensive numerical techniques that provide solutions to practical problems * Covers the most recent developments on magnet design and application as well as emphasizing latest computation techniques for optimising and characterising the magnetostatic structure design Essential reading for Researchers in Magnets and Applications, Materials Scientists, Structural Engineers, Graduate students in Electrical Engineering.
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spelling cern-15299652021-04-21T22:50:22Zdoi:10.1002/9781118398159http://cds.cern.ch/record/1529965engWang, QiuliangPractical design of magnetostatic structure using numerical simulationOther Fields of PhysicsCovers the practical numerical method for the analysis and design of magnets Extensively covers the magnet design and computation aspects from theories to practical applications, emphasizing design methods of practical structures such as superconducting, electromagnetic and permanent magnet for use in various scientific instruments, industrial processing, biomedicine and special electrical equipments. The computations cover a wide range of numerical techniques and analytical derivation to efficiently provide solutions to complicated problems that are often encountered in practice, where simple analytical calculations are no longer adequate. Chapters include: Introduction of Magnet Technology, Magnetostatic Equation for the Magnet Structure, Finite Element Analysis for Magnetostatic Field, Integral Method for Magnetostatic Field, Numerical Method of Solenoid Coils Design, Series Analysis of Axially Symmetric Magnetic Field, Magnets with High Magnetic Field and High Homogeneity, Permanent Magnet and its Applications, Shimming Magnetic Field with Optimal Magnet Structure, Electro-Mechanical Effect of Magnet, Calculation Formula of Magnetic Field Vector/Recurrence Formula of Legendre Function/Magnetization Equation in Cylindrical Coordinate System. * Presents a clear introduction to magnet technology, followed by basic theories, numerical analysis and practical applications * Emphasizes the latest developments in magnet design, including MRI systems, and provides comprehensive numerical techniques that provide solutions to practical problems * Covers the most recent developments on magnet design and application as well as emphasizing latest computation techniques for optimising and characterising the magnetostatic structure design Essential reading for Researchers in Magnets and Applications, Materials Scientists, Structural Engineers, Graduate students in Electrical Engineering.Magnets are widely used in industry, medical, scientific instruments, and electrical equipment. They are the basic tools for scientific research and electromagnetic devices. Numerical methods for the magnetic field analysis combined with mathematical optimization from practical applications of the magnets have been widely studied in recent years. It is necessary for professional researchers, engineers, and students to study these numerical methods for the complex magnet structure design instead of using traditional ""trial-and-error"" methods. Those working in this field will find this book usWileyoai:cds.cern.ch:15299652013
spellingShingle Other Fields of Physics
Wang, Qiuliang
Practical design of magnetostatic structure using numerical simulation
title Practical design of magnetostatic structure using numerical simulation
title_full Practical design of magnetostatic structure using numerical simulation
title_fullStr Practical design of magnetostatic structure using numerical simulation
title_full_unstemmed Practical design of magnetostatic structure using numerical simulation
title_short Practical design of magnetostatic structure using numerical simulation
title_sort practical design of magnetostatic structure using numerical simulation
topic Other Fields of Physics
url https://dx.doi.org/10.1002/9781118398159
http://cds.cern.ch/record/1529965
work_keys_str_mv AT wangqiuliang practicaldesignofmagnetostaticstructureusingnumericalsimulation