Deconvolving the roles of E x B shear and pedestal structure in the energy confinement quality of super H-mode experiments

被引:7
作者
Garofalo, A. M. [1 ]
Ding, S. [2 ]
Solomon, W. M. [1 ]
Grierson, B. A. [1 ]
Jian, X. [3 ]
Osborne, T. H. [1 ]
Holland, C. [3 ]
Knolker, M. [1 ]
Laggner, F. M. [4 ]
Chrystal, C. [1 ]
Marinoni, A. [5 ]
Petty, C. C. [1 ]
机构
[1] Gen Atom, San Diego, CA 92121 USA
[2] Oak Ridge Associated Univ, Oak Ridge, TN USA
[3] Univ Calif San Diego, San Diego, CA 92103 USA
[4] Princeton Plasma Phys Lab, POB 451, Princeton, NJ 08543 USA
[5] MIT, 77 Massachusetts Ave, Cambridge, MA 02139 USA
关键词
tokamak; pedestal; rotation; confinement quality; fusion performance; theoretical predictions; DENSITY;
D O I
10.1088/1741-4326/ac4d63
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Analysis of 'super H-mode' experiments on DIII-D has put forward that high plasma toroidal rotation, not high pedestal, plays the essential role in achieving energy confinement quality H (98y2) >> 1 (Ding et al 2020 Nucl. Fusion 60 034001). Recently, super H-mode experiments with variable input torque have confirmed that high rotation shear discharges have very high levels of H (98y2) (>1.5), independent of the pedestal height, and that high pedestal discharges with low rotation shear have levels of H (98y2) only slightly above 1 (<= 1.2). Although some increase in stored energy with higher pedestal occurs, the energy confinement quality mainly depends on the toroidal rotation shear, which varies according to different levels of injected neutral beam torque per particle. Quasi-linear gyrofluid modeling achieves a good match of the experiment when including the E x B shear; without including plasma rotation, the modeling predicts a confinement quality consistent with the empirical observation of H (98y2) similar to 1.2 at low rotation. Nonlinear gyrokinetic transport modeling shows that the effect of E x B turbulence stabilization is far larger than other mechanisms, such as the so-called hot-ion stabilization (T (i)/T (e)) effect. Consistent with these experimental and modeling results are previous simulations of the ITER baseline scenario using a super H-mode pedestal solution (Solomon et al 2016 Phys. Plasmas 23 056105), which showed the potential to exceed the Q = 10 target if the pedestal density could be increased above the Greenwald limit. A close look at these simulations reveals that the predicted energy confinement quality is below 1 even at the highest pedestal pressure. The improvement in Q at higher pedestal density is due to the improved fusion power generation at the higher core density associated with higher pedestal density, not to an improved energy confinement quality.
引用
收藏
页数:11
相关论文
共 31 条
[1]   Full linearized Fokker-Planck collisions in neoclassical transport simulations [J].
Belli, E. A. ;
Candy, J. .
PLASMA PHYSICS AND CONTROLLED FUSION, 2012, 54 (01)
[2]   The H-mode density limit in the full tungsten ASDEX Upgrade tokamak [J].
Bernert, M. ;
Eich, T. ;
Kallenbach, A. ;
Carralero, D. ;
Huber, A. ;
Lang, P. T. ;
Potzel, S. ;
Reimold, F. ;
Schweinzer, J. ;
Viezzer, E. ;
Zohm, H. .
PLASMA PHYSICS AND CONTROLLED FUSION, 2015, 57 (01)
[3]   Impact of plasma triangularity and collisionality on electron heat transport in TCV L-mode plasmas [J].
Camenen, Y. ;
Pochelon, A. ;
Behn, R. ;
Bottino, A. ;
Bortolon, A. ;
Coda, S. ;
Karpushov, A. ;
Sauter, O. ;
Zhuang, G. .
NUCLEAR FUSION, 2007, 47 (07) :510-516
[4]   Tokamak profile prediction using direct gyrokinetic and neoclassical simulation [J].
Candy, J. ;
Holland, C. ;
Waltz, R. E. ;
Fahey, M. R. ;
Belli, E. .
PHYSICS OF PLASMAS, 2009, 16 (06)
[5]   Predicting the rotation profile in ITER [J].
Chrystal, C. ;
Grierson, B. A. ;
Haskey, S. R. ;
Sontag, A. C. ;
Poli, F. M. ;
Shafer, M. W. ;
deGrassie, J. S. .
NUCLEAR FUSION, 2020, 60 (03)
[6]   Nonlinear Stabilization of Tokamak Microturbulence by Fast Ions [J].
Citrin, J. ;
Jenko, F. ;
Mantica, P. ;
Told, D. ;
Bourdelle, C. ;
Garcia, J. ;
Haverkort, J. W. ;
Hogeweij, G. M. D. ;
Johnson, T. ;
Pueschel, M. J. .
PHYSICAL REVIEW LETTERS, 2013, 111 (15)
[7]   The role of toroidal rotation in the very high energy confinement quality observed in super H-mode experiments on DIII-D [J].
Ding, S. ;
Garofalo, A. M. ;
Jian, X. ;
Holland, C. ;
Grierson, B. A. ;
Solomon, W. M. ;
Marinoni, A. ;
Knolker, M. ;
McClenaghan, J. .
PHYSICS OF PLASMAS, 2021, 28 (11)
[8]   On the very high energy confinement observed in super H-mode DIII-D experiments [J].
Ding, S. ;
Garofalo, A. M. ;
Knolker, M. ;
Marinoni, A. ;
McClenaghan, J. ;
Grierson, B. A. .
NUCLEAR FUSION, 2020, 60 (03)
[9]  
Ding S., 2020, 28 IAEA FUS EN C EUR
[10]   Density limits in toroidal plasmas [J].
Greenwald, M .
PLASMA PHYSICS AND CONTROLLED FUSION, 2002, 44 (08) :R27-R80