A brief summary of tungsten technology development in Korea

Author:

Hong Suk-Ho

Publisher

Springer Science and Business Media LLC

Reference24 articles.

1. Griffith S. Design review for tungsten divertor shows way ahead, ITER Newsline. 2014. http://www.iter.org/newsline/274/1639. Accessed 31 Oct 2014.

2. Matthews GF, Edwards P, Hirai T, Kear M, Lioure A, Lomas P, Loving A, Lungu C, Maier H, Mertens P, Neilson D, Neu R, Pamela J, Philipps V, Piazza G, Riccardo V, Rubel M, Ruset C, Villedieu E, Way M, the ITER-like Wall Project Team. Overview of the ITER-like wall project. Phys. Scr. 2007;T128:137.

3. Gruber O, Sips ACC, Dux R, Eich T, Fuchs JC, Herrmann A, Kallenbach A, Maggi CF, Neu R, Pütterich T, Schweinzer J, Stober J, the ASDEX Upgrade Team. Compatibility of ITER scenarios with full tungsten wall in ASDEX Upgrade. Nucl Fusion. 2009;49(11):115014.

4. Tsitrone E, Supra WT. Environment in steady-state Tokamak (WEST) Project Activities. in: 4th IEA international workshop on plasma material interaction facilities for fusion research (PMIF 2013). Oak Ridge, USA. 2013.

5. Wan BN, Liang Y, Gong XZ, Xiang N, Xu GS, Sun Y, Wang L, Qian JP, Liu HQ, Zeng L, Zhang L, Zhang XJ, Ding BJ, Zang Q, Lyu B, Li MH, Ding F, Ding SY, Du HF, Luo ZP, Huang J, Zhang T, Zhang Y, Li GQ, Xia TY. Recent advances in EAST physics experiments in support of steady-state operation for ITER and CFETR. In: Fusion energy Conference (FEC) 2018, Ahmedabad, India. 2018. https://conferences.iaea.org/indico/event/151/papers/6248/files/4420-IAEA_overview_Wan_2018_v5.pdf. Accessed 22 Oct 2018.

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