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The tokamak (a doughnut-shaped vacuum chamber surrounded by magnetic coils) is the principal tool in controlled fusion research. This book acts as an introduction to the subject and a basic reference for theory, definitions, equations, and experimental results. Since the first introductory account of tokamaks in 1987, when the tokamak had become the predominant device in the attempt to achieve a useful power source from thermonuclear fusion, and the developments and advances in the subject covered in the second edition in 1997, following substantial research on large tokamaks (the long awaited achievement of significant amounts of fusion power and the problems involved in designing and building a tokamak reactor), the emphasis has been on preparing the ground for an experimental reactor. In addition, there have been further significant advances in understanding plasma behaviour, such as the wider experience of internal transport barriers, the appreciation of the role of tearing models driven by neoclassical effects and insights from turbulence simulations.The fourth edition has been completely revised, bringing all aspects up-to-date and describing the development of tokamaks to the point of producing significant fusion power. It also now addresses the issues relating to the design and future operation of the international tokamak ITER.
This text investigates the physical principles, operational mechanics, and engineering challenges inherent in tokamak devices as the primary mechanism for achieving controlled thermonuclear fusion. John Wesson, a recognized authority in plasma physics, synthesizes decades of experimental data and theoretical developments to provide a comprehensive framework for understanding fusion research. The book serves as both an introductory guide and a technical reference, detailing the transition from early experimental devices to the complex requirements of modern reactor design.
What You Will Find
Experts and researchers in the field of nuclear physics regard this monograph as a foundational text for understanding the evolution of tokamak technology. Readers frequently note the high level of technical density, making it an essential resource for graduate students and professional physicists involved in fusion energy research.
Page Count:
800
Publication Date:
2011-12-17
Publisher:
Oxford University Press
ISBN-10:
0199592233
ISBN-13:
9780199592234
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