Applied Magnetofluid Dynamics: Modelling and Computation: Analysis of Multi-Physical Hydromagnetic Flows - Couverture souple

Beg, O. Anwar; Ghosh, Swapan; Bég, Tasveer

 
9783846508657: Applied Magnetofluid Dynamics: Modelling and Computation: Analysis of Multi-Physical Hydromagnetic Flows

Synopsis

Applied Magnetofluid Dynamics: Modelling and Computation discusses a selection of advanced topics in linear and nonlinear flows of electrically-conducting fluids. It uses a differential equation model-building approach to study such phenomena, including in each chapter details of mathematical formulations, literature reviews, analytical and numerical solution procedures and interpretation. Many complex phenomena, not previously considered in other textbooks in magneto-fluid dynamics (MFD) are considered. These include resonance, magnetic squeeze films, non-Newtonian magneto-hydrodynamics and magneto-heat transfer from conical and rotating bodies. Applications of the models discussed range from magnetic materials processing to physiological flows and aerospace engineering. Complex variables, asymptotic methods, element free Galerkin methods, finite differences, MAPLE, homotopy, finite element, local nonsimilarity and network simulation methods are all described in detail.

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Présentation de l'éditeur

Applied Magnetofluid Dynamics: Modelling and Computation discusses a selection of advanced topics in linear and nonlinear flows of electrically-conducting fluids. It uses a differential equation model-building approach to study such phenomena, including in each chapter details of mathematical formulations, literature reviews, analytical and numerical solution procedures and interpretation. Many complex phenomena, not previously considered in other textbooks in magneto-fluid dynamics (MFD) are considered. These include resonance, magnetic squeeze films, non-Newtonian magneto-hydrodynamics and magneto-heat transfer from conical and rotating bodies. Applications of the models discussed range from magnetic materials processing to physiological flows and aerospace engineering. Complex variables, asymptotic methods, element free Galerkin methods, finite differences, MAPLE, homotopy, finite element, local nonsimilarity and network simulation methods are all described in detail.

Biographie de l'auteur

Dr. O. Anwar Bég is Research Leader in Biomechanics/Biotechnology in the Department of Engineering and Mathematics, Sheffield Hallam University, UK and directs the MEng (Hons) Aerospace Engineering course. Born in 1969, he obtained his PhD in Engineering Science from Manchester University in 1996. He has published 130 journal papers and 3 books.

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