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Mantica, P.*; Bourdelle, C.*; Camenen, Y.*; Dejarnac, R.*; Evans, T. E.*; Grler, T.*; Hillesheim, J.*; Idomura, Yasuhiro; Jakubowski, M.*; Ricci, P.*; et al.
Nuclear Fusion, 57(8), p.087001_1 - 087001_19, 2017/08
Times Cited Count:6 Percentile:31.75(Physics, Fluids & Plasmas)This conference report summarizes the contributions to, and discussions at, the 21st Joint EU-US Transport Task Force Workshop, held in Leysin, Switzerland, during 5-8 September 2016. The workshop was organized under 8 topics: progress towards full-F kinetic turbulence simulation; high and low Z impurity transport, control and effects on plasma confinement; 3D effects on core and edge transport (including MHD, external fields and stellarators); predictive experimental design; electron heat transport and multi-scale integration; understanding power decay length in the Scrape-Off Layer (SOL); role of the SOL in the L-H transition; validation of fundamental turbulence properties against turbulence measurements.
Peeters, A. G.*; Angioni, C.*; Bortolon, A.*; Camenen, Y.*; Casson, F. J.*; Duval, B.*; Fiederspiel, L.*; Hornsby, W. A.*; Idomura, Yasuhiro; Hein, T.*; et al.
Nuclear Fusion, 51(9), p.094027_1 - 094027_13, 2011/09
Times Cited Count:102 Percentile:97.23(Physics, Fluids & Plasmas)Camenen, Y.*; Idomura, Yasuhiro; Jolliet, S.; Peeters, A. G.*
Nuclear Fusion, 51(7), p.073039_1 - 073039_11, 2011/07
Times Cited Count:90 Percentile:96.36(Physics, Fluids & Plasmas)Labit, B.*; Pochelon, A.*; Rancic, M.*; Piras, F.*; Bencze, A.*; Bottino, A.*; Brunner, S.*; Camenen, Y.*; Chattopadhyay, P. K.*; Coda, S.*; et al.
Proceedings of 23rd IAEA Fusion Energy Conference (FEC 2010) (CD-ROM), 8 Pages, 2011/03
Peeters, A. G.*; Angioni, C.*; Bortolon, A.*; Camenen, Y.*; Casson, F. J.*; Dubal, B.*; Fiederspiel, L.*; Hornsby, W. A.*; Idomura, Yasuhiro; Kluy, N.*; et al.
Proceedings of 23rd IAEA Fusion Energy Conference (FEC 2010) (CD-ROM), 13 Pages, 2011/03
Idomura, Yasuhiro; Jolliet, S.; Camenen, Y.*
no journal, ,
Linear analyzes ITG-TEM turbulence are performed by developing a kinetic electron model in a global gyrokinetic full-f Vlasov code GT5D. Through comparisons with a local flux-tube gyrokinetic code GKW, it is found that finite plasma size effects provide changes in mode structures leading to generation of residual stress. It is also shown that the residual stress changes its sign in each parameter regime where ITG modes or TEM modes are dominant. The result shows that plasma rotation driven by the residual stress may change its direction depending on the dominant modes.