Magnetohydrodynamic Stability of Tokamaks 1st Edition by Hartmut Zohm – Ebook PDF Instant Download/Delivery: 9783527412327 ,3527412328
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Product details:
ISBN 10: 3527412328
ISBN 13: 9783527412327
Author: Hartmut Zohm
The book is based on lectures that the author has given to Master and PhD students in Fusion Plasma Physics. Due its strong link to experimental results in MHD instabilities, the book is also of use to senior researchers in the field, i.e. experimental physicists and engineers in fusion reactor science.
The volume is organized in three parts. It starts with an introduction to the MHD equations, a section on toroidal equilibrium (tokamak and stellarator), and on linear stability analysis. Starting from there, the ideal MHD stability of the tokamak configuration will be treated in the second part which is subdivided into current driven and pressure driven MHD. This includes many examples with reference to experimental results for important MHD instabilities such as kinks and their transformation to RWMs, infernal modes, peeling modes, ballooning modes and their relation to ELMs. Finally the coverage is completed by a chapter on resistive stability explaining reconnection and island formation. Again, examples from recent tokamak MHD such as sawteeth, CTMs, NTMs and their relation to disruptions are extensively discussed.
Magnetohydrodynamic Stability of Tokamaks 1st Edition Table of contents:
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Introduction to Tokamak Physics and MHD Stability
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Fundamental Equations of Magnetohydrodynamics
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Equilibrium Properties: Grad–Shafranov Equation and Beyond
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Ideal MHD Stability: Energy Principles and Stability Criteria
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Internal MHD Modes: Sawtooth, Internal Kink, and Fishbone Instabilities
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Edge-Localized Modes (ELMs) and Pedestal Stability
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External Kink and Resistive Wall Modes
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Neoclassical Tearing Modes (NTMs) and Their Control
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Kinetic Effects and Two-Fluid Modeling
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Stability Analysis Using Linearized MHD Codes
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Nonlinear MHD Simulations in Tokamak Plasmas
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Experimental Observations of MHD Phenomena
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Active MHD Control Techniques: Feedback, Profiles, and Magnetic Perturbations
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MHD in Advanced Scenarios: Asymmetric Divertors, Hybrid Modes
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Integrated Modeling of Transport, Turbulence, and MHD
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Scaling, ITER, and DEMO Implications
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Diagnostics for MHD Instability Detection
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Challenges and Future Directions in MHD Stability Study
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Conclusion and Outlook
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Appendices
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Mathematical Tools for MHD Stability Analysis
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Glossary of Symbols and Conventions
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References
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Index
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