First scenario development with the JET new ITER-like wall

E. Joffrin, M. Baruzzo, M. Beurskens, C. Bourdelle, S. Brezinsek, J. Bucalossi, P. Buratti, G. Calabro, C.D. Challis, M. Clever, J. Coenen, E. Delabie, R. Dux, P. Lomas, E. De La Luna, P. De Vries, J. Flanagan, L. Frassinetti, D. Frigione, C. GiroudM. Groth, N. Hawkes, J. Hobirk, M. Lehnen, G. Maddison, J. Mailloux, C.F. Maggi, G. Matthews, M. Mayoral, A. Meigs, R. Neu, I. Nunes, T. Puetterich, F. Rimini, M. Sertoli, B. Sieglin, A.C.C. Sips, G. Van Rooij, I. Voitsekhovitch

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In the recent JET experimental campaigns with the new ITER-like wall (JET-ILW), major progress has been achieved in the characterization and operation of the H-mode regime in metallic environments: (i) plasma breakdown has been achieved at the first attempt and X-point L-mode operation recovered in a few days of operation; (ii) stationary and stable type-I ELMy H-modes with βN∼ 1.4 have been achieved in low and high triangularity ITER-like shape plasmas and are showing that their operational domain at H = 1 is significantly reduced with the JET-ILW mainly because of the need to inject a large amount of gas (above 1022D s-1) to control core radiation; (iii) in contrast, the hybrid H-mode scenario has reached an H factor of 1.2-1.3 at βNof 3 for 2-3 s; and, (iv) in comparison to carbon equivalent discharges, total radiation is similar but the edge radiation is lower and Zeffof the order of 1.3-1.4. Strong core radiation peaking is observed in H-mode discharges at a low gas fuelling rate (i.e. below 0.5 × 1022D s-1) and low ELM frequency (typically less than 10 Hz), even when the tungsten influx from the diverter is constant. High-Z impurity transport from the plasma edge to the core appears to be the dominant factor to explain these observations. This paper reviews the major physics and operational achievements and challenges that an ITER-like wall configuration has to face to produce stable plasma scenarios with maximized performance. © 2014 EURATOM.
Original languageEnglish
Article number013011
Pages (from-to)-
JournalNuclear Fusion
Issue number1
Publication statusPublished - Jan 2014
Externally publishedYes


All Science Journal Classification (ASJC) codes

  • Nuclear and High Energy Physics
  • Condensed Matter Physics

Cite this

Joffrin, E., Baruzzo, M., Beurskens, M., Bourdelle, C., Brezinsek, S., Bucalossi, J., Buratti, P., Calabro, G., Challis, C. D., Clever, M., Coenen, J., Delabie, E., Dux, R., Lomas, P., De La Luna, E., De Vries, P., Flanagan, J., Frassinetti, L., Frigione, D., ... Voitsekhovitch, I. (2014). First scenario development with the JET new ITER-like wall. Nuclear Fusion, 54(1), -. [013011].