Experimental survey of the L-H transition conditions in the DIII-D tokamak
T. N. Carlstrom, P. Gohil, J.G. Watkins, K.H. Burrell, S. Coda, E. J. Doyle, R. J. Groebner, J Kim, R.A. Moyer, C. L. Rettig
Abstract
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T. N. Carlstrom, P. Gohil, J.G. Watkins, K.H. Burrell, S. Coda, E. J. Doyle, R. J. Groebner, J Kim, R.A. Moyer, C. L. Rettig
Abstract
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We present the global analysis of a recent survey of the H-mode power threshold in DIII-D using D degrees to D + NBI after boronization of the vacuum vessel. Single parameter scans of B T , I p , density, and plasma shape have been carried out on the DIII-D tokamak for neutral beam heated single-null and double-null diverted plasmas. In single-null discharges, the power threshold is found to increase approximately linearly with B T and n e but remains independent of I p . In double-null discharges, the power threshold is found to be approximately independent of both B T and n e . Various shape parameters such as plasma-wall gaps had only a weak effect on the power threshold. Imbalancing the double null configuration resulted in a large increase in the threshold power.
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We present the global analysis of a recent survey of the H-mode power threshold in DIII-D using D degrees to D + NBI after boronization of the vacuum vessel. Single parameter scans of B T , I p , density, and plasma shape have been carried out on the DIII-D tokamak for neutral beam heated single-null and double-null diverted plasmas. In single-null discharges, the power threshold is found to increase approximately linearly with B T and n e but remains independent of I p . In double-null discharges, the power threshold is found to be approximately independent of both B T and n e . Various shape parameters such as plasma-wall gaps had only a weak effect on the power threshold. Imbalancing the double null configuration resulted in a large increase in the threshold power.
Key concepts: DIII-D, Null (SQL), Tokamak, Plasma, Physics, Atomic physics, Power (physics), Neutral beam injection