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Magnetohydrodynamics

Magnetohydrodynamics
Author: Hans Goedbloed
Publisher: Cambridge University Press
Total Pages: 995
Release: 2019-01-31
Genre: Science
ISBN: 1107123925

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An introduction to magnetohydrodynamics combining theory with advanced topics including the applications of plasma physics to thermonuclear fusion and plasma astrophysics.


Principles of Magnetohydrodynamics

Principles of Magnetohydrodynamics
Author: J. P. Goedbloed
Publisher: Cambridge University Press
Total Pages: 644
Release: 2004-08-05
Genre: Science
ISBN: 9780521626071

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This textbook provides a modern and accessible introduction to magnetohydrodynamics (MHD). It describes the two main applications of plasma physics, laboratory research on thermo-nuclear fusion energy and plasma astrophysics of the solar system, stars and accretion disks, from the single viewpoint of MHD. This approach provides effective methods and insights for the interpretation of plasma phenomena on virtually all scales, from the laboratory to the universe. It equips the reader with the necessary tools to understand the complexities of plasma dynamics in extended magnetic structures. The classical MHD model is developed in detail without omitting steps in the derivations and problems are included at the end of each chapter. This text is ideal for senior-level undergraduate and graduate courses in plasma physics and astrophysics.


Magnetohydrodynamics

Magnetohydrodynamics
Author: R.J. Moreau
Publisher: Springer Science & Business Media
Total Pages: 342
Release: 1990-11-30
Genre: Science
ISBN: 9780792309376

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Magnetohydrodynamics

Magnetohydrodynamics
Author:
Publisher:
Total Pages: 452
Release: 1993
Genre: Electrodynamics
ISBN:

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MHD Flows in Compact Astrophysical Objects

MHD Flows in Compact Astrophysical Objects
Author: Vasily S. Beskin
Publisher: Springer Science & Business Media
Total Pages: 425
Release: 2009-12-08
Genre: Science
ISBN: 3642012906

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Accretion flows, winds and jets of compact astrophysical objects and stars are generally described within the framework of hydrodynamical and magnetohydrodynamical (MHD) flows. Analytical analysis of the problem provides profound physical insights, which are essential for interpreting and understanding the results of numerical simulations. Providing such a physical understanding of MHD Flows in Compact Astrophysical Objects is the main goal of this book, which is an updated translation of a successful Russian graduate textbook. The book provides the first detailed introduction into the method of the Grad-Shafranov equation, describing analytically the very broad class of hydrodynamical and MHD flows. It starts with the classical examples of hydrodynamical accretion onto relativistic and nonrelativistic objects. The force-free limit of the Grad-Shafranov equation allows us to analyze in detail the physics of the magnetospheres of radio pulsars and black holes, including the Blandford-Znajek process of energy extraction from a rotating black hole immersed in an external magnetic field. Finally, on the basis of the full MHD version of the Grad-Shafranov equation the author discusses the problems of jet collimation and particle acceleration in Active Galactic Nuclei, radio pulsars, and Young Stellar Objects. The comparison of the analytical results with numerical simulations demonstrates their good agreement. Assuming that the reader is familiar with the basic physical and mathematical concepts of General Relativity, the author uses the 3+1 split approach which allows the formulation of all results in terms of physically clear language of three dimensional vectors. The book contains detailed derivations of equations, numerous exercises, and an extensive bibliography. It therefore serves as both an introductory text for graduate students and a valuable reference work for researchers in the field.