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Author: International Atomic Energy Agency Staff
Publisher:
ISBN: 9780119853629
Category :
Languages : en
Pages : 277
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Book Description
Atomic and Plasma-Material Interaction Data for Fusion
Author: International Atomic Energy Agency Staff
Publisher:
ISBN: 9780119853629
Category :
Languages : en
Pages : 277
Get Book
Book Description
Atomic and Plasma-Material Interaction Data for Fusion
Author: International Atomic Energy Agency
Publisher:
ISBN: 9789201081070
Category :
Languages : en
Pages : 84
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Book Description
Author: International Atomic Energy Agency
Publisher: Atomic and Plasma-Material Int
ISBN: 9789201314109
Category : Science
Languages : en
Pages : 0
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Book Description
IAEA brought together specialists in fusion materials and plasma-material interaction for exchange of information and coordination of research activities on interaction of tritium with plasma-facing materials. This volume covers tritium retention in fusion wall materials, measurements of tritium inventory and means to remove trapped tritium.
Author:
Publisher:
ISBN:
Category : Controlled fusion
Languages : en
Pages :
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Book Description
Author: International Atomic Energy Agency
Publisher: IAEA
ISBN: 9789201118035
Category : Juvenile Nonfiction
Languages : en
Pages : 178
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Book Description
The twelfth volume of Atomic and Plasma-Material Interaction Data for Fusion represents the result of a coordinated effort of leading theoretical groups within the IAEA Co-ordinated Research Project (CRP) on Radiative Cooling Rates of Fusion Plasma Impurities. The contributions of the participants of this CRP, contained in the present volume, significantly enlarge the available information on radiative processes taking place in different regions of fusion plasmas. This information is an important ingredient in many modelling and diagnostic studies of fusion plasmas.
Author: International Atomic Energy Agency
Publisher:
ISBN:
Category :
Languages : en
Pages : 199
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Book Description
Author: International Atomic Energy Agency
Publisher:
ISBN:
Category :
Languages : en
Pages : 120
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Book Description
Author: Ratko K. Janev
Publisher: Elsevier Publishing Company
ISBN:
Category : Science
Languages : en
Pages : 502
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Book Description
Atomic and plasma-material interaction processes play an important role in thermonuclear fusion plasmas and the knowledge of these processes has a significant impact on fusion energy research and development. The present volume provides a comprehensive survey of atomic and plasma-material interaction aspects of controlled thermonuclear fusion. The review articles included in this volume describe the role of atomic and plasma-material interaction processes in the currently most active fusion research areas and emphasize the need for accurate quantitative information on these processes for resolving many outstanding issues in fusion research and reactor design development such as plasma energy balance, particle transport and confinement, impurity control, thermal power and helium exhaust, plasma heating and fuelling, edge plasma physics, development of fusion reactor plasma facing components and plasma diagnostics and modelling.
Author: IAEA
Publisher:
ISBN: 9789201012050
Category :
Languages : en
Pages : 65
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Book Description
This publication, arising from a Co-ordinated Research Project on Radiative Cooling Rates of Fusion plasma impurities provides information on radiative processes taking place in different regions of fusion plasmas. This information is an important ingredient in many modelling and diagnostic studies of fusion plasmas.
Author: International Atomic Energy Agency
Publisher:
ISBN: 9789201091192
Category : Science
Languages : en
Pages : 212
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Book Description
The present volume of Atomic and Plasma-Material Interaction Data for Fusion presents the results of a coordinated research project (CRP) on plasma-wall interaction with irradiated tungsten and tungsten alloys in fusion devices. The chemical element tungsten is widely foreseen as a plasma-facing material in a fusion reactor, where it is subject to an intense neutron radiation flux. This publication provides details of a 5-year project devoted to better understanding the properties of tungsten in this environment through experimental study and theoretical modelling. Of particular practical concern is the viability of the metal as a structural material after irradiation damage, and its increased propensity to absorb the tritium fuel used in a fusion reaction.