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Federici, G.; Andrew, P.; Barabaschi, P.; Brooks, J.; Doerner, R.; Geier, A.; Herrmann, A.; Janeschitz, G.; Krieger, K.; Kukushkin, A.; Loarte, A.; Neu, R.; Saibene, G.; Shimada, M.; Strohmayer, G.; Sugihara, M., E-mail: federig@ipp.mpg.de2003
AbstractAbstract
[en] Some of the remaining crucial plasma edge physics and plasma-material interaction issues of the ITER tokamak are discussed in this paper, using either modelling or projections of experimental results from existing tokamak operation or relevant laboratory simulations. The paper covers the following subject areas at issue in the design of the ITER device: (1) plasma thermal loads during Type I ELMs and disruptions, ensuing erosion effects and prospects for mitigating measures, (2) control of co-deposited tritium inventory when carbon is used even on small areas in the divertor near the strike points, (3) efficiency of edge and core fuelling for expected pedestal densities in ITER, and (4) erosion and impurity transport with a full tungsten divertor. Directions and priorities of future research are proposed to narrow remaining uncertainties in the above areas
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Source
PSI-15: 15. international conference on plasma-surface interactions in controlled fusion devices; Gifu (Japan); 26-31 May 2002; S0022311502013272; Copyright (c) 2003 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Literature Type
Conference
Journal
Country of publication
BETA DECAY RADIOISOTOPES, BETA-MINUS DECAY RADIOISOTOPES, BOUNDARY LAYERS, CLOSED PLASMA DEVICES, ELEMENTS, HYDROGEN ISOTOPES, IMPURITIES, INSTABILITY, ISOTOPES, LAYERS, LIGHT NUCLEI, MATERIALS, METALS, NONMETALS, NUCLEI, ODD-EVEN NUCLEI, PLASMA INSTABILITY, PLASMA MACROINSTABILITIES, POWER DENSITY, RADIOISOTOPES, REFRACTORY METALS, SIMULATION, THERMONUCLEAR DEVICES, THERMONUCLEAR REACTORS, TOKAMAK DEVICES, TOKAMAK TYPE REACTORS, TRANSITION ELEMENTS, YEARS LIVING RADIOISOTOPES
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