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Self-consistent pedestal prediction for JET-ILW in preparation of the DT campaign

Saarelma, S. (author)
Andersson Sundén, Erik (author)
Uppsala universitet,Tillämpad kärnfysik
Binda, Federico, 1987- (author)
Uppsala universitet,Tillämpad kärnfysik
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Cecconello, Marco (author)
Uppsala universitet,Tillämpad kärnfysik
Conroy, Sean (author)
Uppsala universitet,Tillämpad kärnfysik
Ericsson, Göran (author)
Uppsala universitet,Tillämpad kärnfysik
Eriksson, Jacob, Dr, 1985- (author)
Uppsala universitet,Tillämpad kärnfysik
Hellesen, Carl, 1980- (author)
Uppsala universitet,Tillämpad kärnfysik
Hjalmarsson, Anders (author)
Uppsala universitet,Tillämpad kärnfysik
Possnert, Göran, 1951- (author)
Uppsala universitet,Tillämpad kärnfysik
Primetzhofer, Daniel (author)
Uppsala universitet,Tillämpad kärnfysik
Sahlberg, Arne (author)
Uppsala universitet,Tillämpad kärnfysik
Sjöstrand, Henrik, 1978- (author)
Uppsala universitet,Tillämpad kärnfysik
Skiba, Mateusz, 1985- (author)
Uppsala universitet,Tillämpad kärnfysik
Weiszflog, Matthias (author)
Uppsala universitet,Tillämpad kärnfysik
Zychor, I (author)
Frassinetti, Lorenzo (author)
KTH,Fusionsplasmafysik
Bilkova, P. (author)
Challis, C. D. (author)
Chankin, A. (author)
Fridström, Richard (author)
KTH,Fusionsplasmafysik
Garzotti, L. (author)
Horvath, L. (author)
Maggi, C. F. (author)
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 (creator_code:org_t)
American Institute of Physics (AIP), 2019
2019
English.
In: Physics of fluids. - : American Institute of Physics (AIP). - 1070-6631 .- 1089-7666 .- 1070-664X .- 1089-7674. ; 26:7
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • The self-consistent core-pedestal prediction model of a combination of EPED1 type pedestal prediction and a simple stiff core transport model is able to predict Type I ELMy (edge localized mode) pedestals of a large JET-ILW (ITER-like wall) database at the similar accuracy as is obtained when the experimental global plasma beta is used as input. The neutral penetration model [R. J. Groebner et al., Phys. Plasmas 9, 2134 (2002)] with corrections that take into account variations due to gas fueling and plasma triangularity is able to predict the pedestal density with an average error of 15%. The prediction of the pedestal pressure in hydrogen plasma that has higher core heat diffusivity compared to a deuterium plasma with similar heating and fueling agrees with the experiment when the isotope effect on the stability, the increased diffusivity, and outward radial shift of the pedestal are included in the prediction. However, the neutral penetration model that successfully predicts the deuterium pedestal densities fails to predict the isotope effect on the pedestal density in hydrogen plasmas.

Subject headings

NATURVETENSKAP  -- Fysik -- Fusion, plasma och rymdfysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Fusion, Plasma and Space Physics (hsv//eng)
NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

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