Global Effects on Drift Wave Microturbulence in Tokamak Plasmas  

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作  者:李慧 李继全 王正汹 Hui Li;Ji-Quan Li;Zheng-Xiong Wang(Key Laboratory of Materials Modification by Laser,Ion,and Electron Beams(Ministry of Education),School of Physics,Dalian University of Technology,Dalian 116024,China;Southwestern Institute of Physics,Chengdu 610041,China)

机构地区:[1]Key Laboratory of Materials Modification by Laser,Ion,and Electron Beams(Ministry of Education),School of Physics,Dalian University of Technology,Dalian 116024,China [2]Southwestern Institute of Physics,Chengdu 610041,China

出  处:《Chinese Physics Letters》2023年第10期78-82,共5页中国物理快报(英文版)

基  金:supported by the National Natural Science Foundation of China(Grant Nos.12205035,11925501,12275071,and U1967206)。

摘  要:Microturbulence excited by ion temperature gradient(ITG)-dominant and trapped electron mode(TEM)-dominant instabilities is investigated by employing an extended fluid code(ExFC)based on the so-called Landau fluid model,which includes the trapped electron dynamics.Firstly,the global effect is emphasized through direct comparison of ITG and TEM instability domains based on local and global simulations.The global effect makes differences in both linear instability and nonlinear transport,including the fluxes and the structure of zonal flow.The transitions among ITG,TEM,and ITG&TEM(ITG&TEM represents that ITG and TEM coexist with different wavelengths)instabilities/turbulence depend not only on the three key drive forces(R/L_n,R/L_(Te),R/L_(Ti))but also on their global(profile)effects.Secondly,a lot of electrostatic linear gyro-fluid simulations are concluded to obtain a distribution of the instability.

关 键 词:DYNAMICS FLOW TURBULENCE 

分 类 号:O17[理学—数学]

 

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