Changeover between helium and hydrogen fueled plasmas in JET and WEST
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Published:2024-03
Issue:
Volume:38
Page:101587
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ISSN:2352-1791
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Container-title:Nuclear Materials and Energy
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language:en
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Short-container-title:Nuclear Materials and Energy
Author:
Wauters T.ORCID, Bisson R., Delabie E., Douai D., Gallo A., Gaspar J.ORCID, Jepu I., Kovtun Y.ORCID, Pawelec E.ORCID, Matveev D.ORCID, Meigs A., Brezinsek S.ORCID, Coffey I., Dittmar T., Fedorczak N., Gunn J., Hakola A., Jacquet P., Kirov K., Lerche E., Likonen J., Litherland-Smith E., Loarer T., Lomas P., Lowry C., Maslov M.ORCID, Monakhov I., Morales J.ORCID, Noble C., Nouailletas R., Pégourié B., Perez von Thun C., Pitts R.A.ORCID, Reux C.ORCID, Rimini F., Sheikh H., Silburn S., Sun H., Taylor D.ORCID, Tsitrone E., Vartanian S., Wang E.ORCID, Widdowson A.ORCID
Funder
European Commission Ministerstwo Edukacji i Nauki
Reference20 articles.
1. ITER Organization, “ITER Research Plan within the Staged Approach,” ITR-18-003, Aug. 2018. Accessed: Aug. 20, 2019. [Online]. Available: https://www.iter.org/doc/www/content/com/Lists/ITER%20Technical%20Reports/Attachments/9/ITER-Research-Plan_final_ITR_FINAL-Cover_High-Res.pdf. 2. Research status and issues of tungsten plasma facing materials for ITER and beyond;Ueda;Fusion Eng. Des.,2014 3. A growth/annealing equilibrium model for helium-induced nanostructure with application to ITER;De Temmerman;Nucl. Mater. Energy,2019 4. Hydrogen trapping in tungsten: impact of helium irradiation and thermal cycling;Ialovega;Phys. Scr.,2020 5. Response of tungsten surfaces to helium and hydrogen plasma exposure under ITER relevant steady state and repetitive transient conditions;Buzi;Nucl. Fusion,2017
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