Selection of plasma facing materials for ITER (original) (raw)

Plasma facing and high heat flux materials – needs for ITER and beyond

Vladimir Barabash

Journal of Nuclear Materials, 2002

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Status of R&D of the Plasma Facing Components for the ITER Divertor “

Vladimir Barabash

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Prequalification of brazed plasma facing components of divertor target elements for ITER like tokamak application

DEVENDRA RATHORE

Fusion Engineering and Design, 2011

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Feasibility study of an actively cooled tungsten divertor in Tore Supra for ITER technology testing

C. Grisolia

Fusion Engineering and Design, 2011

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Progress of the European R&D on plasma–wall interactions, neutron effects and tritium removal in ITER plasma facing materials

Wolfgang Jacob

Fusion Engineering and Design, 2001

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Design assessment of tungsten as an upper panel plasma facing material in ITER

D. Reiter

Journal of Nuclear Materials, 2013

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A full tungsten divertor for ITER: Physics issues and design status

Frederic ESCOURBIAC

Journal of Nuclear Materials, 2013

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Innovative tokamak DEMO first wall and divertor material concepts

Clement Wong

Journal of Nuclear Materials, 2009

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Development of advanced high heat flux and plasma-facing materials

R. Pippan

Nuclear Fusion

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Resistance of carbon-based materials for the ITER divertor under different radiation fluxes

T. Burtseva

Journal of Nuclear Materials, 1992

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Materials for the plasma-facing components of fusion reactors

Vladimir Barabash

Journal of Nuclear Materials, 2004

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R&D on divertor plasma facing components at the Institute for Plasma Research

kedar bhope

Nukleonika, 2015

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Optimization of tungsten castellated structures for the ITER divertor

Dmitry Matveev

Journal of Nuclear Materials, 2015

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Thermocyclic tests of the divertor plate mock-ups for the ITER reactor

Vladimir Barabash

Fusion Engineering and Design, 1991

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Materials issues in the design of the ITER first wall, blanket, and divertor

Richard Mattas

Journal of Nuclear Materials, 1992

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The 11th International Workshop on Plasma-Facing Materials and Components for Fusion Applications

Wolfgang Jacob

Physica Scripta, 2007

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Development of tungsten armored high heat flux plasma facing components for ITER like divertor application

kedar bhope

Fusion Engineering and Design, 2019

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Nuclear analyses for the design of the ITER-like plasma facing components vertical targets of the DEMO divertor

Fabio Moro

Fusion Engineering and Design, 2020

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R&D on full tungsten divertor and beryllium wall for JET ITER-like wall project

M M RUBEL

Fusion Engineering and Design, 2007

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Beryllium plasma-facing components for the ITER-like wall project at JET

Cristian Lungu

Journal of Physics: Conference Series, 2008

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Investigation of tungsten-coated divertor tiles at the JET tokamak with the ITER‐Like Wall

K. Mergia

HNPS Proceedings

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Test of divertor materials under simulated ITER plasma disruption conditions at the GOL-3 facility

V. Postupaev

Journal of Nuclear Materials, 1994

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European development of prototypes for ITER high heat flux components

Marco Grattarola

Fusion Engineering and Design, 2000

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ITER plasma facing components, design and development

A. Cardella

Fusion Engineering and Design, 1991

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Definition of acceptance criteria for the ITER divertor plasma-facing components through systematic experimental analysis

Frederic ESCOURBIAC

Physica Scripta, 2009

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Design of the ITER EDA plasma facing components

S. Chiocchio

Fusion Engineering and Design, 1998

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Advanced solutions for beryllium and tungsten plasma-facing components

S. Chiocchio

Fusion Engineering and Design, 1998

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ITER divertor, design issues and research and development

S. Chiocchio

Fusion Engineering and Design, 1999

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European development of He-cooled divertors for fusion power plants

Claudio Nardi

Nuclear Fusion, 2005

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Divertor design for the tokamak physics experiment

B. Braams, K. Werley

Journal of Nuclear Materials, 1995

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Materials research under ITER-like divertor conditions at FOM Rijnhuizen

D. Borodin

Journal of Nuclear Materials, 2011

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Nuclear analysis of the ITER full-tungsten divertor

Frederic ESCOURBIAC

Fusion Engineering and Design, 2013

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Physics basis for the first ITER tungsten divertor

Frederic ESCOURBIAC

Nuclear Materials and Energy, 2019

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