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Coupled Systems: Theory, Models, and Applications in Engineering: Chapman & Hall/CRC Numerical Analysis and Scientific Computing Series

Autor Juergen Geiser
en Limba Engleză Hardback – 14 feb 2014
Efficient Methods to Solve Complex Coupled Systems


Coupled Systems: Theory, Models, and Applications in Engineering explains how to solve complicated coupled models in engineering using analytical and numerical methods. It presents splitting multiscale methods to solve multiscale and multiphysics problems and describes analytical and numerical methods in time and space for evolution equations arising in engineering problems.




The book discusses the effectiveness, simplicity, stability, and consistency of the methods in solving problems that occur in real-life engineering tasks. It shows how MATLAB® and Simulink® are used to implement the methods. The author also covers the coupling of separate, multiple, and logical scales in applications, including microscale, macroscale, multiscale, and multiphysics problems.




Covering mathematical, algorithmic, and practical aspects, this book brings together innovative ideas in coupled systems and extends standard engineering tools to coupled models in materials and flow problems with respect to their scale dependencies and their influence on each time and spatial scale.
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Specificații

ISBN-13: 9781466578012
ISBN-10: 1466578017
Pagini: 314
Ilustrații: 92 black & white illustrations, 26 black & white tables
Dimensiuni: 156 x 234 x 28 mm
Greutate: 0.59 kg
Ediția:1
Editura: CRC Press
Colecția Chapman and Hall/CRC
Seria Chapman & Hall/CRC Numerical Analysis and Scientific Computing Series


Cuprins

Introduction. General Principle for Coupled Systems. Numerical Methods. Applications. Summary and Perspectives. Software Tools. Appendix. Bibliography. Index.

Descriere

This book explains how to solve complicated coupled models in engineering using analytical and numerical methods. It extends standard engineering tools to coupled models in materials and flow problems with respect to their scale dependencies and their influence on each time and spatial scale. The author presents splitting multiscale methods to solve multiscale and multiphysics problems and describes analytical and numerical methods in time and space for evolution equations arising in engineering problems. MATLAB® and Simulink® are used to implement the methods.