科技报告详细信息
Comparisons of Predicted Plasma Performance in ITER H-mode Plasmas with Various Mixes of External He
R.V. Budny
关键词: ANIONS;    BEAM INJECTION;    CYCLOTRONS;    ELECTRONS;    HEATING;    HEATING SYSTEMS;    PERFORMANCE;    PHYSICS;    PLASMA;    ROTATION;    SHEAR;    SIMULATION;    TORQUE;    TRANSPORT ITER;   
DOI  :  10.2172/951304
RP-ID  :  PPPL-4391
PID  :  OSTI ID: 951304
Others  :  TRN: US0902235
学科分类:原子、分子光学和等离子物理
美国|英语
来源: SciTech Connect
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【 摘 要 】

Performance in H-mode DT plasmas in ITER with various choices of heating systems are predicted and compared. Combinations of external heating by Negative Ion Neutral Beam Injection (NNBI), Ion Cyclotron Range of Frequencies (ICRF), and Electron Cyclotron Heating (ECH) are assumed. Scans with a range of physics assumptions about boundary temperatures in the edge pedestal, alpha ash transport, and toroidal momentum transport are used to indicate effects of uncertainties. Time-dependent integrated modeling with the PTRANSP code is used to predict profiles of heating, beam torque, and plasma profiles. The GLF23 model is used to predict temperature profiles. Either GLF23 or the assumption of a constant ratio for χø/χi is used to predict toroidal rotation profiles driven by the beam torques. Large differences for the core temperatures are predicted with different mixes of the external heating during the density and current ramp-up phase, but the profiles are similar during the flattop phase. With χø/χi = 0.5, the predicted toroidal rotation is relatively slow and the flow shear implied by the pressure, toroidal rotation, and neoclassical poloidal rotation are not sufficient to cause significant changes in the energy transport or steady state temperature profiles. The GLF23-predicted toroidal rotation is faster by a factor of six, and significant flow shear effects are predicted.

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