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Multiphysics Simulation : Electromechanical System Applications and Optimization / by Ercan M. Dede, Jaewook Lee, Tsuyoshi Nomura.

SpringerLink Books Computer Science (2011-2024) Available online

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Format:
Book
Author/Creator:
Dede, Ercan M., author.
Lee, Jaewook, author.
Nomura, Tsuyoshi, author.
Contributor:
SpringerLink (Online service)
Series:
Computer Science (Springer-11645)
Simulation foundations, methods and applications 2195-2817
Simulation Foundations, Methods and Applications, 2195-2817
Language:
English
Subjects (All):
Computer simulation.
Mechatronics.
Mathematical optimization.
Computer-aided engineering.
Simulation and Modeling.
Optimization.
Computer-Aided Engineering (CAD, CAE) and Design.
Local Subjects:
Simulation and Modeling.
Mechatronics.
Optimization.
Computer-Aided Engineering (CAD, CAE) and Design.
Physical Description:
1 online resource (XVIII, 212 pages) : 144 illustrations, 80 illustrations in color.
Edition:
First edition 2014.
Contained In:
Springer eBooks
Place of Publication:
London : Springer London : Imprint: Springer, 2014.
System Details:
text file PDF
Summary:
Understanding and predicting the performance of electromechanical systems is crucially important in the design of many modern products, and today's engineers and researchers are constantly seeking methods for optimizing these complex systems. This important text/reference highlights a unique combination of numerical tools and strategies for handling the challenges of multiphysics simulation. As multiphysics simulation is a broad and rapidly growing field, requiring an array of technical skills in different intersecting disciplines, this book presents a specific focus on electromechanical systems as the target application. Topics and features: Introduces the concept of design via simulation, along with the role of multiphysics simulation in today's engineering environment Discusses the importance of structural optimization techniques in the design and development of electromechanical systems Provides an overview of the physics commonly involved with electromechanical systems for applications such as electronics, magnetic components, RF components, actuators, and motors Reviews the governing equations for the simulation of related multiphysics problems Outlines relevant (topology and parametric size) optimization methods for electromechanical systems Describes in detail several multiphysics simulation and optimization example studies in both two and three dimensions, with sample numerical code Researchers and engineers in industry and academia will find this work to be an invaluable reference on advanced electromechanical system design. The book is also suitable for students at undergraduate and graduate level, and many of the design examples will be of interest to anyone curious about the unique design solutions that arise from the coupling of optimization methods with multiphysics simulation techniques.
Contents:
Introduction
Overview of Physics for Electromechanical Systems
Governing Equations for Electromechanical Systems
Optimization Methods for Electromechanical Systems
Electromechanical System Simulation and Optimization Studies
Extensions to New Topics
Appendix - Sample Multiphysics Optimization Code.
Other Format:
Printed edition:
ISBN:
978-1-4471-5640-6
9781447156406
Access Restriction:
Restricted for use by site license.

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