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首页> 外文期刊>Plasma physics and controlled fusion >Resolving the wave-particle-plasma interaction: advances in the diagnosis, interpretation and self-consistent modelling of waves, particles and the plasma configuration
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Resolving the wave-particle-plasma interaction: advances in the diagnosis, interpretation and self-consistent modelling of waves, particles and the plasma configuration

机译:解决波-粒子-等离子体相互作用:在波,粒子和等离子体构型的诊断,解释和自洽建模方面取得进展

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摘要

The purpose of this review is to present the state-of-the-art in diagnosis, interpretation and modelling of waves, particles and the magnetic configuration in fusion plasmas. Knowledge of the magnetic configuration underpins all confinement, stability and transport physics, as well as being an essential prerequisite for the inference of plasma parameters from many diagnostics. As the effect of fast particles become important enough to modify the macroscopic variables of the plasma, the macroscopic fluid equations for equilibrium need to be modified to encapsulate the effects of pressure anisotropy, particle and heat flow. We present a review of such modifications in tokamak geometry, and review probabilistic validation techniques of different equilibrium models. In the last decade new spectral tools have also emerged to characterize the linear behaviour of waves and wave-modes, such as SVD, Fourier-SVD, data-mining and the bispectrum. An emerging trend is the use of statistics to characterize the nonlinear wave population of the plasma from wave field data. Finally, progress is reported on developments in understanding the physics of wave-particle resonant interactions, and the emerging science of the wave-particle-plasma interaction.
机译:这篇综述的目的是介绍融合等离子体中波,粒子和磁结构的诊断,解释和建模的最新技术。磁性配置的知识是所有限制,稳定性和传输物理的基础,并且是从许多诊断程序推断等离子体参数的必要前提。随着快速粒子的作用变得足以改变等离子体的宏观变量,平衡的宏观流体方程需要加以修改,以封装压力各向异性,粒子和热流的影响。我们提出了对托卡马克几何形状的这种修改的审查,并审查了不同均衡模型的概率验证技术。在过去的十年中,还出现了新的频谱工具来表征波和波模式的线性行为,例如SVD,Fourier-SVD,数据挖掘和双谱。一种新兴趋势是利用统计数据从波场数据中表征等离子体的非线性波群。最后,在了解波粒共振相互作用的物理原理以及波粒等离子体相互作用的新兴科学方面取得了进展。

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