A radiative divertor technique is planned for the NSTX-U tokamak to prevent excessive erosion and thermal damage of divertor plasma-facing components in H-mode plasma discharges with auxiliary heating up to 12 MW. In the radiative (partially detached) divertor, extrinsically seeded deuterium or impurity gases are used to increase plasma volumetric power and momentum losses. A real-time feedback control of the gas seeding rate is planned for discharges of up to 5 s duration. The outer divertor leg plasma electron temperature Te estimated spectroscopically in real time will be used as a control parameter. A vacuum ultraviolet spectrometer McPherson Model 251 with a fast charged-coupled device detector is developed for temperature monitoring between 5 and 30 eV, based on the Δn = 0, 1 line intensity ratios of carbon, nitrogen, or neon ion lines in the spectral range 300–1600 Å. A collisional-radiative model-based line intensity ratio will be used for relative calibration. A real-time Te-dependent signal within a characteristic divertor detachment equilibration time of ∼10–15 ms is expected.
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November 2016
Research Article|
August 04 2016
Real-time radiative divertor feedback control development for the NSTX-U tokamak using a vacuum ultraviolet spectrometer
V. A. Soukhanovskii;
V. A. Soukhanovskii
a)
1
Lawrence Livermore National Laboratory
, 7000 East Ave., Livermore, California 94550, USA
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R. Kaita;
R. Kaita
2
Princeton Plasma Physics Laboratory
, 100 Stellarator Rd., Princeton, New Jersey 08543, USA
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B. Stratton
B. Stratton
2
Princeton Plasma Physics Laboratory
, 100 Stellarator Rd., Princeton, New Jersey 08543, USA
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a)
Electronic mail: vlad@llnl.gov
Contributed paper, published as part of the Proceedings of the 21st Topical Conference on High-Temperature Plasma Diagnostics, Madison, Wisconsin, USA, June 2016.
Rev. Sci. Instrum. 87, 11D605 (2016)
Article history
Received:
June 06 2016
Accepted:
July 06 2016
Citation
V. A. Soukhanovskii, R. Kaita, B. Stratton; Real-time radiative divertor feedback control development for the NSTX-U tokamak using a vacuum ultraviolet spectrometer. Rev. Sci. Instrum. 1 November 2016; 87 (11): 11D605. https://doi.org/10.1063/1.4960058
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