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Sustained W-melting experiments on actively cooled ITER-like plasma facing unit in WEST

  • Y. Corre*
  • , A. Grosjean
  • , J. P. Gunn
  • , K. Krieger
  • , S. Ratynskaia
  • , O. Skalli-Fettachi
  • , C. Bourdelle
  • , S. Brezinsek
  • , V. Bruno
  • , N. Chanet
  • , J. Coenen
  • , X. Courtois
  • , R. Dejarnac
  • , E. Delmas
  • , L. Delpech
  • , C. Desgranges
  • , M. Diez
  • , L. Dubus
  • , A. Durif
  • , A. Ekedahl
  • N. Fedorczak, M. Firdaouss, J. L. Gardarein, J. Gaspar, J. Gerardin, C. Guillemaut, M. Houry, T. Loarer, P. Maget, P. Mandelbaum, R. Mitteau, M. Missirlian, P. Moreau, R. Nouailletas, E. Nardon, C. Pocheau, A. Podolnik, P. Reilhac, X. Regal-Mezin, C. Reux, M. Richou, F. Rigollet, J. L. Schwob, E. Thorén, P. Tolias, E. Tsitrone
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

37 Scopus citations

Abstract

The consequences of tungsten (W) melting on divertor lifetime and plasma operation are high priority issues for ITER. Sustained and controlled W-melting experiment has been achieved for the first time in WEST on a poloidal sharp leading edge of an actively cooled ITER-like plasma facing unit (PFU). A series of dedicated high power steady state plasma discharges were performed to reach the melting point of tungsten. The leading edge was exposed to a parallel heat flux of about 100MW.m-2 for up to 5 s providing a melt phase of about 2 s without noticeable impact of melting on plasma operation (radiated power and tungsten impurity content remained stable at constant input power) and no melt ejection were observed. The surface temperature of theMBwas monitored by a high spatial resolution (0.1mm/pixel) infrared camera viewing the melt zone from the top of the machine. The melting discharge was repeated three times resulting in about 6 s accumulated melting duration leading to material displacement from three similar pools. Cumulated on the overall sustained melting periods, this leads to excavation depth of about 230 µmfollowed by a re-solidified tungsten bump of 200 µmin the JxB direction.

Original languageEnglish
Article number124057
JournalPhysica Scripta
Volume96
Issue number12
DOIs
StatePublished - Dec 2021

Bibliographical note

Publisher Copyright:
© 2021 Institute of Physics Publishing. All rights reserved.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • Heat flux calculation
  • Ir thermography
  • Plasma facing unit
  • Tungsten melting

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