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Plasma burn-through simulations using the DYON code and predictions for ITER - IOPscience

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Published 28 November 2013 • © 2013 IOP Publishing Ltd Plasma Physics and Controlled Fusion, Volume 55, Number 12 Citation Hyun-Tae Kim et al 2013 Plasma Phys. Control. Fusion 55 124032 DOI 10.1088/0741-3335/55/12/124032 Skip to each figure in the article Skip to each table in the article Skip to each data item in the article What is article data? 995 Total downloads Get permission to re-use this article hyun.kim09@imperial.ac.uk 1 JET-EFDA Culham Science Centre, Abingdon, OX14 3DB, UK 2 Department of Physics, Imperial College London, SW7 2AZ, London, UK 3 EURATOM/CCFE Association, Culham Science Centre, OX14 3DB Abingdon, UK 4 EFDA-CSU, Culham Science Centre, OX14 3DB Abingdon, UK 5 FOM institute DIFFER, Association EURATOM-FOM, PO Box 1207, 3430BE, Nieuwegein, Netherlands 6 Annex to Romanelli F et al 2012 Proc. 24rd IAEA Conf. (San Diego, CA, 2012) (Vienna: IAEA). Buy this article in print This paper will discuss simulations of the full ion

Plasma burn-through simulations using the DYON code and predictions for ITER - IOPscience Plasma Physics and Controlled Fusion Purpose-led Publishing is a coalition of three not-for-profit publishers in the field of physical sciences: AIP Publishing, the American Physical Society and IOP Publishing. Together, as publishers that will always put purpose above profit, we have defined a set of industry standards that underpin high-quality, ethical scholarly communications. We are proudly declaring that science is our only shareholder. Paper Plasma burn-through simulations using the DYON code and p

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