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相关论文: Excitation of Zonal Flow by Intermediate-Scale Tor…

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The derivation of an intermediate-scale gyrokinetic-electron theory in nonuniform tokamak plasmas [Chen H. et al 2021 Nucl. Fusion 61 066017] has shown that a Navier-Stokes type nonlinearity couples electron-temperature-gradient (ETG) modes…

等离子体物理 · 物理学 2023-01-05 Stefan Tirkas , Haotian Chen , Gabriele Merlo , Frank Jenko , Scott Parker

An analytical model for zonal flow generation by toroidal ion-temperature-gradient (ITG) modes, including finite $\beta$ electromagnetic effects, is derived. The derivation is based on a fluid model for ions and electrons and takes into…

等离子体物理 · 物理学 2015-05-27 Johan Anderson , Hans Nordman , Rameswar Singh , Raghvendra Singh

The generation of large-scale zonal flows by small-scale electrostatic drift waves in electron temperature gradient(ETG) driven turbulence model is considered. The generation mechanism is based on the modulational instability of a finite…

等离子体物理 · 物理学 2015-06-26 Yu. A. Zaliznyak , A. I. Yakimenko , V. M. Lashkin

In the present work the zonal flow (ZF) growth rate in toroidal ion-temperature-gradient (ITG) mode turbulence including the effects of elongation is studied analytically. The scaling of the ZF growth with plasma parameters is examined for…

等离子体物理 · 物理学 2009-11-13 J. Anderson , H. Nordman , R. Singh , J. Weiland

The role of self-generated zonal flows in the collisionless trapped-electron mode (CTEM) turbulence is a long-standing open issue in tokamak plasmas. Here we show, for the first time, that the zonal flow excitation in the CTEM turbulence is…

等离子体物理 · 物理学 2022-01-26 Haotian Chen , Liu Chen

Nonlinear entropy transfer processes in toroidal ion temperature gradient (ITG) and electron temperature gradient (ETG) driven turbulence are investigated based on the gyrokinetic entropy balance relations for zonal and non-zonal modes,…

等离子体物理 · 物理学 2026-02-27 Motoki Nakata , Tomo-Hiko Watanabe , Hideo Sugama

Strongly driven ion-scale turbulence in tokamak plasmas is shown to be regulated by a new propagating zonal flow mode, the toroidal secondary mode, which is nonlinearly supported by the turbulence. The mode grows and propagates due to the…

等离子体物理 · 物理学 2026-03-24 Richard Nies , Felix Parra , Michael Barnes , Noah Mandell , William Dorland

In this study, global nonlinear electromagnetic gyrokinetic simulations are conducted to investigate turbulence in the Internal transport barrier (ITB) region of the EAST tokamak discharge with weakly reversed magnetic shear. Linear…

等离子体物理 · 物理学 2025-11-07 Yuehao Ma , Pengfei Liu , Jian Bao , Zhihong Lin , Huishan Cai

Nonlinear multiscale gyrokinetic simulations of a Joint European Torus edge pedestal are used to show that electron-temperature-gradient (ETG) turbulence has a rich three-dimensional structure, varying strongly according to the local…

The linear instability of the electron temperature gradient (ETG) driven modes in the presence of zonal flows is investigated. Random and deterministic $cos$ - like profiles of the zonal flow are considered. It is shown that the presence of…

等离子体物理 · 物理学 2009-11-13 V. M. Lashkin , Yu. A. Zaliznyak , A. I. Yakimenko

In magnetized plasma turbulence, the couplings of perpendicular spatial scales that arise due to the nonlinear interactions are analyzed from the perspective of the free-energy exchanges. The plasmas considered here, with appropriate ion or…

等离子体物理 · 物理学 2015-06-19 Bogdan Teaca , Alejandro Bañón Navarro , Frank Jenko

In this work, we use the global electromagnetic and electrostatic gyro kinetic approaches to investigate the effects of zonal flows forced-driven by Alfv\'en modes due to their excitation by energetic particles (EPs), on the dynamics of ITG…

The role of parallel ion motion for zonal flow generation in ion-temperature-gradient (ITG) mode turbulence is investigated with focus on the effects of acoustic modes and toroidicity on the zonal flow. One possible reason for the weak…

等离子体物理 · 物理学 2009-11-13 J. Anderson , J. Li , Y. Kishimoto

The mean parallel current density evolution equation is presented using electromagnetic (EM) gyrokinetic equation. There exist two types of intrinsic current driving mechanisms resulted from EM electron temperature gradient (ETG)…

等离子体物理 · 物理学 2020-06-30 Wen He , Lu Wang , Shuitao Peng , Weixin Guo , Ge Zhuang

A subgrid electron-temperature-gradient (ETG) model is demonstrated here which averages local electron-scale turbulence from the GENE code over intermediate scales in space and time to include in global ion-temperature-gradient (ITG) GEM…

等离子体物理 · 物理学 2025-07-24 Stefan Tirkas , Yang Chen , Scott Parker

The transport of heat out of tokamak plasmas by turbulence is the dominant mechanism limiting the performance of fusion reactors. Turbulence can be driven by the ion temperature gradient (ITG) and suppressed by toroidal sheared flows.…

等离子体物理 · 物理学 2017-03-20 Ferdinand van Wyk

There are two distinct phases in the evolution of drift wave envelope in the presence of zonal flow. A long-lived standing wave phase, which we call the Caviton, and a short-lived traveling wave phase (in radial direction) we call the…

等离子体物理 · 物理学 2021-03-10 Z. Y. Liu , Y. Z. Zhang , S. M. Mahajan , A. D. Liu , C. Zhou , T. Xie

The present work investigates the direct interaction of sheared mean flow with zonal flows (ZF) and the effect of parallel ion motion on ZF generation in ion-temperature-gradient (ITG) background turbulence. An analytical model for the…

等离子体物理 · 物理学 2009-11-13 J. Anderson , Y. Kishimoto

We propose a quantitative model of ion temperature gradient driven turbulence in toroidal magnetized plasmas. In this model, the turbulence is regulated by zonal flows, i.e. mode saturation occurs by a zonal-flow-mediated energy cascade…

等离子体物理 · 物理学 2015-03-09 G. G. Plunk , A. Bañón Navarro , F. Jenko

Nonlinear gyrokinetic simulations have been conducted to investigate turbulent transport in tokamak plasmas with rotational shear. At sufficiently large flow shears, linear instabilities are suppressed, but transiently growing modes drive…

等离子体物理 · 物理学 2015-05-19 M. Barnes , F. I. Parra , E. G. Highcock , A. A. Schekochihin , S. C. Cowley , C. M. Roach
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