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Journal Article (18)
1.
Journal Article
59, 112004 (2019)
Overview of first Wendelstein 7-X high-performance operation. Nuclear Fusion 2.
Journal Article
57, 102020 (2017)
Major results from the first plasma campaign of the Wendelstein 7-X stellarator. Nuclear Fusion 3.
Journal Article
109-111, Pt. A, pp. 773 - 776 (2016)
Prototyping phase of the high heat flux scraper element of Wendelstein 7-X. Fusion Engineering and Design 4.
Journal Article
44 (9, Part 1), pp. 1738 - 1744 (2016)
Overview of Design and Analysis Activities for the W7-X Scraper Element. IEEE Transactions on Plasma Science 5.
Journal Article
98-99, pp. 1231 - 1234 (2015)
Development activities of the high heat flux scraper element. Fusion Engineering and Design 6.
Journal Article
68 (3), pp. 635 - 639 (2015)
Multiphysics Analysis of the Wendelstein 7-X Actively Cooled Scraper Element. Fusion Science and Technology 7.
Journal Article
98-99, pp. 1357 - 1361 (2015)
Design of the Wendelstein 7-X inertially cooled Test Divertor Unit Scraper Element. Fusion Engineering and Design 8.
Journal Article
42 (3), pp. 545 - 551 (2014)
Modeling and Analysis of the W7-X High Heat-Flux Divertor Scraper Element. IEEE Transactions on Plasma Science 9.
Journal Article
42 (3), pp. 542 - 532 (2014)
Status of High Heat Flux Components at W7-X. IEEE Transactions on Plasma Science 10.
Journal Article
42 (3), pp. 675 - 681 (2014)
Configuration Space Control Using the Example of In-vessel Components for Wendelstein 7-X. IEEE Transactions on Plasma Science 11.
Journal Article
64 (2), pp. 263 - 268 (2013)
Actively Water-cooled Plasma Facing Components of the Wendelstein 7-X Stellarator. Fusion Science and Technology 12.
Journal Article
53, 126001 (15pp) (2013)
Technical challenges in the construction of the steady-state stellarator Wendelstein 7-X. Nuclear Fusion 13.
Journal Article
88 (9-10), pp. 1773 - 1777 (2013)
Design and analysis of the W7-X divertor scraper element. Fusion Engineering and Design 14.
Journal Article
86 (6-8), pp. 572 - 575 (2011)
Design and technological solutions for the plasma facing components of WENDELSTEIN 7-X. Fusion Engineering and Design 15.
Journal Article
86 (6-8), pp. 689 - 693 (2011)
Alternative conceptual design of a magnet support structure for plasma fusion devices of stellarator type. Fusion Engineering and Design 16.
Journal Article
84 (7-11), pp. 1475 - 1478 (2009)
Progress in the design and development of a test divertor (TDU) for the start of W7-X operation. Fusion Engineering and Design 17.
Journal Article
75-79, pp. 565 - 569 (2005)
Manufacture of the vacuum vessels and the ports of Wendelstein 7-X. Fusion Engineering and Design 18.
Journal Article
75-79, pp. 565 - 569 (2004)
Manufacture of the Plasma vessels and the ports for Wendelstein 7-X. Fusion Engineering and Design Conference Paper (7)
19.
Conference Paper
Thermal-fluid modeling of single- and two-phase flows in the W7-X high heat flux divertor scraper element. In: 2015 IEEE 26th Symposium on Fusion Engineering (SOFE). 26th IEEE Symposium on Fusion Engineering (SOFE 2015), Austin, TX, May 31, 2015 - June 04, 2015. IEEE, New York, NY (2015)
20.
Conference Paper
Wendelstein 7-X High Heat Flux Components. In: 2013 IEEE 25th Symposium on Fusion Engineering (SOFE), 8 pp.. 25th Symposium on Fusion Engineering (SOFE 2013), San Francisco, CA, June 10, 2013 - June 14, 2013. IEEE, Piscataway, NJ (2013)