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Technical Paper

New Safety and Technical Challenges and Operational Experience on the JET First Trace Tritium Experiment

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Pages 274-279 | Published online: 07 Apr 2017

References

  • A. GIBSON et al. “Deuterium-Tritium Plasmas In JET” Physics of Plasmas 5, 1839 (1998).
  • A. C. BELL et al. “The safety case for JET D-T operation” Fusion Engineering and Design, 115–130, 47 (1999).
  • D. STORK et al. “JET engineering development towards D-T operations in an ITER-like machine configuration” Fusion Engineering, 70–80, 1 (1997).
  • E. SURREY et al, “Neutral Beam Injection in the JET Trace Tritium Experiment” these proceedings
  • T. JONES et al, “Technical and scientific aspects of the JET Trace-Tritium experimental campaign” these proceedings.
  • I. WORTH et al, “Development of a Novel Contamination Resistant Ion Chamber for Process Tritium Measurement And Use In The Jet First Trace Tritium Experiment” these proceedings.
  • KD. ZASTROW et al “Tritium transport experiments on the JET tokamak” 31st EPS on Controlled Fusion and Plasma Physics, London, (2004).
  • RJH PEARCE et al. “Recovery from Glow Discharge Cleaning using Air on the JET tokamak” virtual proceedings IVC-16 Venice (2004).
  • DB BRENNAN et al “Operation of the JET Active Gas Handling System During the Trace Tritium Experiment 2003”, these proceedings.
  • RJH PEARCE et al “The JET GAS Baking plant for DT Operation and Analysis of Tritium Permeation and Baking Gas Activation in DTE1” Fusion Technology, 1001–1004, (1998).
  • RJH PEARCE et al “Vacuum pumping developments on the JET tokamak” Fusion Engineering and Design 58-59, 359 (2001).
  • B. PATEL et al “Operational Heath Physics Experience during the JET D-T Experiment” Fusion Technology, 1645–1648, (1998).

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