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Plasma-Material Interactions in a Controlled Fusion Reactor, Tanabe Tetsuo


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Автор: Tanabe Tetsuo
Название:  Plasma-Material Interactions in a Controlled Fusion Reactor
ISBN: 9789811603303
Издательство: Springer
Классификация:




ISBN-10: 9811603308
Обложка/Формат: Paperback
Страницы: 220
Вес: 0.31 кг.
Дата издания: 09.03.2022
Серия: Springer series in plasma science and technology
Язык: English
Издание: 1st ed. 2021
Иллюстрации: 50 tables, color; 78 illustrations, color; 32 illustrations, black and white; xii, 207 p. 110 illus., 78 illus. in color.; 50 tables, color; 78 illust
Размер: 23.39 x 15.60 x 1.17 cm
Читательская аудитория: Professional & vocational
Ссылка на Издательство: Link
Рейтинг:
Поставляется из: Германии
Описание:

0. Preface (3 pages)

1. Introduction (10 pages, 1 table, 5 figures)
1-1. Energy conversion from nuclear to thermal for electric power generation
1-2. Brief history of development of plasma facing materials

2. Discharges in current tokamaks (11 pages, 16 figures)
2-1. Views of the inside of current tokamaks with and without plasma
2-2. Diagnostics for PSI research
2-2-1 Optical spectroscopy
2-2-2 Probe measurements
2-3. Plasma wall interactions observed by prove and limiter experiments

3. Power load on plasma facing materials (11 pages, 1 table, 4 figures)
3-1 Estimation of power load and its distribution in a fusion reactor
3-2 Steady state power load
3-3 Transient power load
3-4 Power load by neutrons
3-5 Mitigation of power load (Power Exhaust)

4. Responses of plasma facing surfaces to heat and particle loads (17 pages, 21 figures)
4-1 Energy loss processes of energetic particles in solid target
4-2 Emission of ions and neutrals
4-2-1 Reflection
4-2-2 Physical sputtering
4-2-3 Chemical sputtering
4-2-4 Ion induced desorption and radiation enhance sublimation
4-3 Electron and photon emissions
4-3-1 Electron emission
4-3-2 Photon emission
4-4 Energy reflection
4-5 Remission of incident ions
4-5-1 Reemission of hydrogen (fuel)
4-5-2 Reemission of inert gas/molecules
4-6 Interaction of released particles with photons and electrons in boundary plasmas
4-7 Summary

5. Erosion and deposition & their influence on plasma behavior (Material transport in tokamak) (7 pages, 9 figures)
5-1 Erosion, transport and deposition
5-2 Formation of deposited layers made of eroded materials
5-2-1 Carbon wall
5-2-1-1 Deposition on plasma facing surface
5-2-1-2 Modification of deposited materials
5-2-1-3 Deposition at non-plasma facing surfaces
5-2-2 Metallic wall
5-3 Summary

6 Material modification by high power load and its influence on plasma (16 pages, 11 figures)
6-1 Power load to PFM
6-2 Material response to heat loads and its influence on boundary plasmas (PMI)
6-2-1 Spontaneous response to plasma heat load
6-2-2 Melting and evaporation
6-2-3 Hydrogen recycling
6-3 Damaging and degradation of PFM
6-3-1 Carbon
6-3-2 W
6-3-2-1 Surface damage by high power load (melting, recrystallization and cracking
6-3-2-3 Surface damage by fuel particle load below melting threshold
6-3-3 Other PFM candidates (Be and Li)
6-3-4 Structure materials

7. Fundamentals of hydrogen recycling and retention (12 pages, 5 figures)
7-1 Overall fuel flow at steady state burning
7-2 Injection of energetic hydrogen
7-3 Reflection, remission and retention
7-4 Permeation
7-5 Isotope effects
7-6 Retention and trapping
7-7 Simulation and modeling

8. PMI in large Tokamaks (24 pages, 2 table, 14 figures)
8-1. Power load in tokamaks
8-1-1 Power load in JET
8-1-2 Exchange of PFM from Carbon to high Z metals
8-1-3 ITER like wall (ILW) in JET
8-1-4 Power load by charged particles from fusion
8-2. Erosion and deposition
8-2-1 Carbon wall
8-2-2 Metallic wall
8-3 Dust
8-4 Recycling and retention of fuels
8.4.1 Consideration of fuel retention rate
8-4-2 Recycling
8-4-2-1 Changes recycling coefficient with discharge time
8-4-2-2 Isotopic replacement and appearance of H (the lightest hydrogen isotope) as an impurity
8-4-2-3 Recycling at steady state
8-4-3 Long term fuel retention
8-4-3-1 Fuel retention in Carbon

Дополнительное описание: Introduction.- Discharges in Current Tokamaks.- Power Load on Plasma Facing Materials.- Responses of Plasma Facing Surfaces to Heat and Particle Loads.- Erosion and Deposition & their Influence on Plasma Behavior (Material Transport in Tokamak).- Material



Nuclear Reactor Systems: A Technical, Historical and Dynamic Approach

Автор: Barre Bertrand, Barrй Bertrand, Anzieu Pascal
Название: Nuclear Reactor Systems: A Technical, Historical and Dynamic Approach
ISBN: 2759806693 ISBN-13(EAN): 9782759806690
Издательство: Walter de Gruyter
Рейтинг:
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Автор: Stacey
Название: Nuclear Reactor Physics, 2nd, Completely Revised and Enlarged Edition
ISBN: 3527406794 ISBN-13(EAN): 9783527406791
Издательство: Wiley
Рейтинг:
Цена: 22968.00 р.
Наличие на складе: Поставка под заказ.

Описание: This book is suitable for an undergraduate and first-year graduate semester-length course in nuclear reactor physics (Part 1: chapters 1 to 8). The purpose of Part 2 (chapters 9 to 16) is to augment Part 1 to provide a comprehensive, detailed, and advanced development of the principal topics of nuclear reactor physics. It is also one of the only comprehensive reference books in the field.

Polymer Reactor Engineering

Автор: C. McGreavy
Название: Polymer Reactor Engineering
ISBN: 9401045836 ISBN-13(EAN): 9789401045834
Издательство: Springer
Рейтинг:
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Наличие на складе: Есть у поставщика Поставка под заказ.

Plasma-Material Interactions in a Controlled Fusion Reactor

Автор: Tanabe Tetsuo
Название: Plasma-Material Interactions in a Controlled Fusion Reactor
ISBN: 9811603278 ISBN-13(EAN): 9789811603273
Издательство: Springer
Цена: 20962.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание:

0. Preface (3 pages)

1. Introduction (10 pages, 1 table, 5 figures)
1-1. Energy conversion from nuclear to thermal for electric power generation
1-2. Brief history of development of plasma facing materials

2. Discharges in current tokamaks (11 pages, 16 figures)
2-1. Views of the inside of current tokamaks with and without plasma
2-2. Diagnostics for PSI research
2-2-1 Optical spectroscopy
2-2-2 Probe measurements
2-3. Plasma wall interactions observed by prove and limiter experiments

3. Power load on plasma facing materials (11 pages, 1 table, 4 figures)
3-1 Estimation of power load and its distribution in a fusion reactor
3-2 Steady state power load
3-3 Transient power load
3-4 Power load by neutrons
3-5 Mitigation of power load (Power Exhaust)

4. Responses of plasma facing surfaces to heat and particle loads (17 pages, 21 figures)
4-1 Energy loss processes of energetic particles in solid target
4-2 Emission of ions and neutrals
4-2-1 Reflection
4-2-2 Physical sputtering
4-2-3 Chemical sputtering
4-2-4 Ion induced desorption and radiation enhance sublimation
4-3 Electron and photon emissions
4-3-1 Electron emission
4-3-2 Photon emission
4-4 Energy reflection
4-5 Remission of incident ions
4-5-1 Reemission of hydrogen (fuel)
4-5-2 Reemission of inert gas/molecules
4-6 Interaction of released particles with photons and electrons in boundary plasmas
4-7 Summary

5. Erosion and deposition & their influence on plasma behavior (Material transport in tokamak) (7 pages, 9 figures)
5-1 Erosion, transport and deposition
5-2 Formation of deposited layers made of eroded materials
5-2-1 Carbon wall
5-2-1-1 Deposition on plasma facing surface
5-2-1-2 Modification of deposited materials
5-2-1-3 Deposition at non-plasma facing surfaces
5-2-2 Metallic wall
5-3 Summary

6 Material modification by high power load and its influence on plasma (16 pages, 11 figures)
6-1 Power load to PFM
6-2 Material response to heat loads and its influence on boundary plasmas (PMI)
6-2-1 Spontaneous response to plasma heat load
6-2-2 Melting and evaporation
6-2-3 Hydrogen recycling
6-3 Damaging and degradation of PFM
6-3-1 Carbon
6-3-2 W
6-3-2-1 Surface damage by high power load (melting, recrystallization and cracking
6-3-2-3 Surface damage by fuel particle load below melting threshold
6-3-3 Other PFM candidates (Be and Li)
6-3-4 Structure materials

7. Fundamentals of hydrogen recycling and retention (12 pages, 5 figures)
7-1 Overall fuel flow at steady state burning
7-2 Injection of energetic hydrogen
7-3 Reflection, remission and retention
7-4 Permeation
7-5 Isotope effects
7-6 Retention and trapping
7-7 Simulation and modeling

8. PMI in large Tokamaks (24 pages, 2 table, 14 figures)
8-1. Power load in tokamaks
8-1-1 Power load in JET
8-1-2 Exchange of PFM from Carbon to high Z metals
8-1-3 ITER like wall (ILW) in JET
8-1-4 Power load by charged particles from fusion
8-2. Erosion and deposition
8-2-1 Carbon wall
8-2-2 Metallic wall
8-3 Dust
8-4 Recycling and retention of fuels
8.4.1 Consideration of fuel retention rate
8-4-2 Recycling
8-4-2-1 Changes recycling coefficient with discharge time
8-4-2-2 Isotopic replacement and appearance of H (the lightest hydrogen isotope) as an impurity
8-4-2-3 Recycling at steady state
8-4-3 Long term fuel retention
8-4-3-1 Fuel retention in Carbon

Accident-Tolerant Materials For Light Water Reactor Fuels

Автор: Rebak, Raul B.
Название: Accident-Tolerant Materials For Light Water Reactor Fuels
ISBN: 0128175036 ISBN-13(EAN): 9780128175033
Издательство: Elsevier Science
Рейтинг:
Цена: 26444.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание:

Accident Tolerant Materials for Light Water Reactor Fuels provides a description of what an accident tolerant fuel is and the benefits and detriments of each concept. The book begins with an introduction to nuclear power as a renewable energy source and the current materials being utilized in light water reactors. It then moves on to discuss the recent advancements being made in accident tolerant fuels, reviewing the specific materials, their fabrication and implementation, environmental resistance, irradiation behavior, and licensing requirements. The book concludes with a look to the future of new power generation technologies. It is written for scientists and engineers working in the nuclear power industry and is the first comprehensive work on this topic.

Man-Made Sun: Experimental Advanced Superconducting Tokamak (East) Fusion Reactor

Автор: Wan Baonian
Название: Man-Made Sun: Experimental Advanced Superconducting Tokamak (East) Fusion Reactor
ISBN: 9811638861 ISBN-13(EAN): 9789811638862
Издательство: Springer
Рейтинг:
Цена: 4611.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: This book introduces the research process and principles of the controlled super-coupling nuclear fusion experiment at the Experimental Advanced Superconducting Tokamak (EAST) nuclear fusion reactor in Hefei, China.

Whale and the reactor

Автор: Winner, Langdon
Название: Whale and the reactor
ISBN: 022669254X ISBN-13(EAN): 9780226692548
Издательство: Wiley
Рейтинг:
Цена: 2851.00 р.
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Описание: An authoritative guide to the Ancient Middle East as seen through the lens of cuneiform writing, the writing system of ancient Mesopotamia. Written by a team of international scholars, with chapter bibliographies and numerous illustrations, the Handbook is a state-of-the-art guide to the discipline as well as offering pathways for future research.

Fast Reactor Nuclear Technology

Автор: Guidez, Joel
Название: Fast Reactor Nuclear Technology
ISBN: 0128219467 ISBN-13(EAN): 9780128219461
Издательство: Elsevier Science
Рейтинг:
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Описание: Calm for your Soul: 365 Days of Spiritual Tranquillity is a collection of spiritual and inspiring writing providing hope and comfort for every single day of the year. Each page begins with a statement followed by an encouraging thought. Relevant scriptural passages are included for readers who desire a deeper time of reflection.

Nuclear Data Guide for Reactor Neutron Metrology

Автор: J.H. Baard; W.L. Zijp; H.J. Nolthenius
Название: Nuclear Data Guide for Reactor Neutron Metrology
ISBN: 0792304861 ISBN-13(EAN): 9780792304869
Издательство: Springer
Рейтинг:
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Автор: Bahman Zohuri
Название: Neutronic Analysis For Nuclear Reactor Systems
ISBN: 3030049051 ISBN-13(EAN): 9783030049058
Издательство: Springer
Рейтинг:
Цена: 20962.00 р.
Наличие на складе: Есть у поставщика Поставка под заказ.

Описание: This expanded new edition develops the theory of nuclear reactors from the fundamentals of fission to the operating characteristics of modern reactors. The first half of the book emphasizes reactor criticality analysis and all of the fundamentals that go into modern calculations. Simplified one group diffusion theory models are presented and extended into sophisticated multi-group transport theory models. The second half of the book deals with the two main topics of interest related to operating reactors – reactor kinetics/dynamics, and in-core fuel management. Additional chapters have been added to expand and bring the material up-to-date and include the utilization of more computer codes. Code models and detailed data sets are provided along with example problems making this a useful text for students and researchers wishing to develop an understanding of nuclear power and its implementation in today’s modern energy spectrum.Covers the fundamentals of neutronic analysis for nuclear reactor systems to help understand nuclear reactor theory;Describes the benefits, uses, safety features, and challenges related to implementation of Small Modular Reactors;Provides examples, data sets, and code to assist the reader in obtaining mastery over the subjects.


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