ITER (French Wikipedia)

Analysis of information sources in references of the Wikipedia article "ITER" in French language version.

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  • (en) R. Strehlow, Transverse waves in detonations: Ii. structure and spacing in h2-o2, c2h2-o2, c2h4-o2 and ch4-o2 systems, AIAA Journal, 7, 1969, p.492–49 (résumé [PDF]).

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  • Commission nationale du débat public, Iter en Provence, t. Cahier 1, (lire en ligne [PDF]), p. 22-23.

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  • Baptiste Regnery, chap. 15 « Enjeux de mise en œuvre des mesures compensatoires : l’exemple du projet ITER », dans Harold Levrel, Nathalie Frascaria-Lacoste, Julien Hay, Gilles Martin, Sylvain Pioch, Restaurer la nature pour atténuer les impacts du développement : Analyse des mesures compensatoires pour la biodiversité, Quæ, 29 juin 2015, (ISBN 275922290X et 978-2759222902, lire en ligne).

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  • (en) Pitts, R. A., Kukushkin, A., Loarte, A., Martin, A., Merola, M., Kessel, C. E.... & Shimada, M., Status and physics basis of the ITER divertor, Physica Scripta, 2009(T138), 014001 (résumé).

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  • (en) F. Crisanti, R. Albanese, G. Granucci et R. Martone, « The Divertor Tokamak Test facility proposal: Physical requirements and reference design », Nuclear Materials and Energy, proceedings of the 22nd International Conference on Plasma Surface Interactions 2016, 22nd SI, vol. 12,‎ , p. 1330–1335 (ISSN 2352-1791, DOI 10.1016/j.nme.2017.05.008, lire en ligne, consulté le ).

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  • (en) Glen A. Wurden, Dealing with the Risk and Consequences of Disruptions in Large Tokamaks, , 36 p. (lire en ligne [PDF]).

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  • (en) Davide Castelvecchi et Jeff Tollefson, « US advised to stick with troubled fusion reactor ITER The Department of Energy says the US should fund ITER until 2018, and then re-evaluate its progress », Nature,‎ (lire en ligne).
  • (en) Ed Gerstner, « Molten radiation shield », Nature Physics,‎ (DOI 10.1038/nphys003, lire en ligne, consulté le ).

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  • (en)Pitts, R. A., Bonnin, X., Escourbiac, F., Hirai, T., Gunn, J. P., Kukushkin, A. S.... & De Temmerman, G., Physics basis for the ITER tungsten divertor, Presentation, 23rd International Conference on Plasma Surface Interactions, Princeton, USA, 2018 (résumé [PDF]).

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  • (en) D. Stamps, S. Tiesze, The influence of initial pressure and temperature on hydrogen-air-diluent detonations, Combustion and Flame, 83 (3), 1991, 353–364 (résumé).
  • (en) N. Lamoureux, N. Djebali-Chaumeix, C. Paillard, Laminar flame velocity for H2-air-He-CO2 mixtures using the spherical bomb method., Experimental Thermal and Fluid Science, 27, 2003, p. 385–339 (résumé).
  • (en) Merola, M., Escourbiac, F., Raffray, A. R., Chappuis, P., Hirai, T., Gicquel, S.... & Team, B. I. P., Engineering challenges and development of the ITER blanket system and divertor, Fusion Engineering and Design, 96, 2015, 34-41 (résumé).
  • (en) F. Crisanti, R. Albanese, G. Granucci et R. Martone, « The Divertor Tokamak Test facility proposal: Physical requirements and reference design », Nuclear Materials and Energy, proceedings of the 22nd International Conference on Plasma Surface Interactions 2016, 22nd SI, vol. 12,‎ , p. 1330–1335 (ISSN 2352-1791, DOI 10.1016/j.nme.2017.05.008, lire en ligne, consulté le ).
  • (en) Bykov, I., Hollmann, E., Pigarov, A., Guterl, J., Groth, M., Osborne, T., & Unterberg, E., Metal vs. graphite divertor: effects of material choice on intrinsic fueling source, APS Meeting Abstracts, 2018.
  • (en) Hirai, T., Panayotis, S., Barabash, V., Amzallag, C., Escourbiac, F., Durocher, A.... & Wirtz, M., Use of tungsten material for the ITER divertor. Nuclear Materials and Energy, 9, 2016, 616-622.

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  • (en) Michael Dittmar, Fusion Illusions, Nuclear Monitor, Issue: #698, no 5997, 27 novembre 2009.

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