Abstract

The multiple scale derivative expansion method is used to manipulate the electron drift kinetic equation, following the theoretical framework of drift wave–zonal flow system developed by Zhang et al. [Zhang Y Z, Liu Z Y, Mahajan S M, Xie T, Liu J <ext-link ext-link-type="uri" xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="http://doi.org/10.1063/1.4995302"> 2017 <i>Phys. Plasmas</i> <b>24</b> 122304 </ext-link>]. At the zeroth order it is the linear eigenmode equation describing the trapped electron mode on a mirco-scale. At the first order it is the envelop equation for trapped electron mode modulated by the zonal flow on a meso-scale. The eigenmode equation has been solved by Xie et al. [Xie T, Zhang Y Z, Mahajan S M, Wu F, He Hongda, Liu Z Y <ext-link ext-link-type="uri" xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="https://doi.org/10.1063/1.5048538"> 2019 <i>Phys. Plasmas</i> <b>26</b> 022503 </ext-link>] to obtain the eigenvalue and two-dimensional mode structure of trapped electron mode. These are essential components in calculating group velocities contained in the envelop equation. The radial group velocity arises from the geodesic curvature of magnetic field in tokamak. The poloidal group velocity stems from the normal curvature and diamagnetic drift velocity, which yields the mapping between the poloidal angle and time. Since the radial group velocity is also a function of poloidal angle, it is mapped to a periodic function of time with a period of milliseconds. The numerical results indicate the rapid zero-crossing, which is significant in the drift wave – zonal flow system and provides a sound foundation for studying zonal flow driven by trapped electron mode.

Highlights

  • zonal flow system developed by Zhang et al

  • the envelop equation for trapped electron mode modulated by the zonal flow on a meso-scale

  • The eigenmode equation has been solved by Xie et al

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Summary

Introduction

东方超环(EAST)装置中等离子体边界锂杂质的碰撞-辐射模型 A collisional-radiative model for lithium impurity in plasma boundary region of Experimental Advanced Superconducting Tokamak 物理学报. HL-2A中环向旋转影响等离子体对共振磁扰动的响应过程 Effect of toroidal rotation on plasma response to resonant magnetic perturbations in HL-2A 物理学报. 按照章等 [Zhang Y Z, Liu Z Y, Mahajan S M, Xie T, Liu J 2017 Phys. Plasmas 24 122304 ] 发展的漂移 波-带状流理论, 将多重尺度导数展开法应用到电子漂移动理学方程, 零级为描述微观尺度捕获电子模的线性 本征模方程, 一级为介观尺度受带状流调制的捕获电子模的包络方程.

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