Impurity Transport in Magnetically Confined Plasmas / IOP Expanding Physics (ePub)
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Motivated by a renewed interest in impurity transport in nuclear fusion research, this reference text covers the diagnostics, experimental approach, and results of recent impurity transport studies in tokamak and helical plasmas. It also covers the impurity transport parallel to the magnetic field in the scrape-off layer (SOL) and the impact of magnetic topology on impurity transport. Topics covered include an introduction to impurity transport; the diagnostics system with passive and active spectroscopy; impurity transport across magnetic flux surfaces; the effect of magnetic topology; and the control of impurity transport using electron cyclotron resonance heating and ion cyclotron resonance heating. With few books available on impurity transport in plasmas, this book would appeal to academic researchers and graduate students on the field of plasma physics and nuclear fusion research.
Key Features
- Describes recent developments in diagnostics for impurity transport
- Covers recent developments of an experimental approach for impurity transport study
- Provides a comprehensive understanding of impurity transport in different magnetic configurations
- Covers a new area of impurity transport experiment including the effect of magnetic topology
- Written by high-profile authors
Naoki Tamura received his B.E. and M.E. from Nagoya University in 1997 and 1999, respectively. He then moved to the Graduate University for Advanced Studies (SOKENDAI), where he began research on impurity transport in magnetically confined toroidal plasmas, for which he obtained his Ph.D. thesis. In this work, under the guidance of Professor Shigeru Sudo of SOKENDAI, he developed a Tracer-Encapsulated Solid Pellet (TESPEL) with the help of many international collaborators. After starting the research on transient heat transport, he became very interested in the turbulent properties of plasmas.
- Autoren: Katsumi Ida , Naoki Tamura
- 2023, 200 Seiten, Englisch
- Verlag: Institute of Physics Publishing
- ISBN-10: 0750314516
- ISBN-13: 9780750314510
- Erscheinungsdatum: 19.12.2023
Abhängig von Bildschirmgröße und eingestellter Schriftgröße kann die Seitenzahl auf Ihrem Lesegerät variieren.
- Dateiformat: ePub
- Größe: 16 MB
- Mit Kopierschutz
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