Validation Of Quasi-Linear Turbulent Transport Models Against Plasmas With Dominant Electron Heating For The Prediction Of Iter Pfpo-1 Plasmas

NUCLEAR FUSION(2021)

引用 14|浏览23
暂无评分
摘要
Kinetic profile predictions of ITER PFPO-1 plasmas require high accuracy in the central electron temperatures to be applied to the calculation of third harmonic electron cyclotron absorption. Correctly predicting the transition from L-mode to H-mode further requires precise estimates of the ion heat flux in the periphery of the plasma. Recent versions of the quasi-linear transport models TGLF and QuaLiKiz were tested against an extensive set of experimental results from ASDEX Upgrade (AUG) and JET-ILW, where the focus was put on AUG plasmas heated by ECRH. Spectra obtained from TGLF are compared to a set of linear gyrokinetic simulations performed with GKW. Electron and ion temperature profiles obtained with TGLF-SAT1geo show good agreement with the experimental profiles, but there is a slight tendency to underpredict central T (e) and T (i) at high ratios T (e)/T (i). QuaLiKiz yields reasonable results for T (e) and T (i) profiles in plasmas where the ion temperature gradient mode is dominant, but predicts a significantly too weak transport in the presence of dominant trapped electron modes in conditions of strong central electron heating.
更多
查看译文
关键词
tokamak, turbulent transport, ITER prefusion power operation, validation quasi-linear models
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要