Back to Search

Plasma Physics for Controlled Fusion

AUTHOR Miyamoto, Kenro
PUBLISHER Springer (05/23/2016)
PRODUCT TYPE Hardcover (Hardcover)

Description

This new edition presents the essential theoretical and analytical methods needed to understand the recent fusion research of tokamak and alternate approaches. The author describes magnetohydrodynamic and kinetic theories of cold and hot plasmas in detail. The book covers new important topics for fusion studies such as plasma transport by drift turbulence, which depend on the magnetic configuration and zonal flows. These are universal phenomena of microturbulence. They can modify the onset criterion for turbulent transport, instabilities driven by energetic particles as well as alpha particle generation and typical plasma models for computer simulation. The fusion research of tokamaks with various new versions of H modes are explained. The design concept of ITER, the international tokamak experimental reactor, is described for inductively driven operations as well as steady-state operations using non-inductive drives. Alternative approaches of reversed-field pinch and its relaxation process, stellator including quasi-symmetric system, open-end system of tandem mirror and inertial confinement are also explained. Newly added and updated topics in this second edition include zonal flows, various versions of H modes, and steady-state operations of tokamak, the design concept of ITER, the relaxation process of RFP, quasi-symmetric stellator, and tandem mirror. The book addresses graduate students and researchers in the field of controlled fusion.




Show More
Product Format
Product Details
ISBN-13: 9783662497807
ISBN-10: 3662497808
Binding: Hardback or Cased Book (Sewn)
Content Language: English
Edition Number: 0002
More Product Details
Page Count: 495
Carton Quantity: 14
Product Dimensions: 6.14 x 1.13 x 9.21 inches
Weight: 1.95 pound(s)
Feature Codes: Illustrated
Country of Origin: NL
Subject Information
BISAC Categories
Science | Physics - Nuclear
Science | Physics - Atomic & Molecular
Science | Power Resources - Nuclear
Dewey Decimal: 333.792
Descriptions, Reviews, Etc.
jacket back

This new edition presents the essential theoretical and analytical methods needed to understand the recent fusion research of tokamak and alternate approaches. The author describes magnetohydrodynamic and kinetic theories of cold and hot plasmas in detail. The book covers new important topics for fusion studies such as plasma transport by drift turbulence, which depend on the magnetic configuration and zonal flows. These are universal phenomena of microturbulence. They can modify the onset criterion for turbulent transport, instabilities driven by energetic particles as well as alpha particle generation and typical plasma models for computer simulation. The fusion research of tokamaks with various new versions of H modes are explained. The design concept of ITER, the international tokamak experimental reactor, is described for inductively driven operations as well as steady-state operations using non-inductive drives. Alternative approaches of reversed-field pinch and its relaxation process, stellator including quasi-symmetric system, open-end system of tandem mirror and inertial confinement are also explained. Newly added and updated topics in this second edition include zonal flows, various versions of H modes, and steady-state operations of tokamak, the design concept of ITER, the relaxation process of RFP, quasi-symmetric stellator, and tandem mirror. The book addresses graduate students and researchers in the field of controlled fusion.

Show More
publisher marketing

This new edition presents the essential theoretical and analytical methods needed to understand the recent fusion research of tokamak and alternate approaches. The author describes magnetohydrodynamic and kinetic theories of cold and hot plasmas in detail. The book covers new important topics for fusion studies such as plasma transport by drift turbulence, which depend on the magnetic configuration and zonal flows. These are universal phenomena of microturbulence. They can modify the onset criterion for turbulent transport, instabilities driven by energetic particles as well as alpha particle generation and typical plasma models for computer simulation. The fusion research of tokamaks with various new versions of H modes are explained. The design concept of ITER, the international tokamak experimental reactor, is described for inductively driven operations as well as steady-state operations using non-inductive drives. Alternative approaches of reversed-field pinch and its relaxation process, stellator including quasi-symmetric system, open-end system of tandem mirror and inertial confinement are also explained. Newly added and updated topics in this second edition include zonal flows, various versions of H modes, and steady-state operations of tokamak, the design concept of ITER, the relaxation process of RFP, quasi-symmetric stellator, and tandem mirror. The book addresses graduate students and researchers in the field of controlled fusion.




Show More

Author: Miyamoto, Kenro
1955 B.S. Department of Physics, Faculty of Science, University of Tokyo

1961 PhD, Graduate School, College of Arts and Science, University of Rochester

1963 Doctor of Engineering, University of Tokyo

1964 - 1979 Associate Professor and Professor, Institute of Plasma Physics, Nagoya University (former institute of present National Institute of Fusion Science)

1979 - 1992 Professor, Department of Physics, Faculty of Science, University of Tokyo

1992 - 2000 Professor, Department of Applied Physics, Faculty of Engineering, Seikei University

1992 - Professor Emeritus, University of Tokyo

1980 - 1988 member of Editorial Board of a (TM)Nuclear Fusiona (TM) (Journal pubished by International Atomic Energy Agency)

1992 - 2002 Guest Scientist, Japan Atomic Energy Research Institute

1999 - 2002 member of ITER Physics Expert Group: ITER (International Thermonuclear Experimental Reactor)

Show More
List Price $169.99
Your Price  $168.29
Hardcover