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首页> 外文期刊>Plasma physics and controlled fusion >Characterisation of the fast-ion edge resonant transport layer induced by 3D perturbative fields in the ASDEX Upgrade tokamak through full orbit simulations
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Characterisation of the fast-ion edge resonant transport layer induced by 3D perturbative fields in the ASDEX Upgrade tokamak through full orbit simulations

机译:通过全轨道模拟,在ASDEX升级托卡克中的3D扰动场诱导的快速离子边缘谐振传输层的表征

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摘要

In recent experiments at the ASDEX Upgrade tokamak the existence of an Edge Resonant Transport Layer (ERTL) was revealed as the main transport mechanism responsible for the measured fast-ion losses in the presence of externally applied 3D fields. The Monte Carlo orbitfollowing code ASCOT was used to study the fast-ion transport including the plasma response calculated with MARS-F, reproducing a strong correlation of fast-ion losses with the poloidal mode spectra of the 3D fields. In this work, a description of the physics underlying the ERTL is presented by means of numerical simulations together with an analytical model and experimental measurements to validate the results. The degradation of fast-ion confinement is calculated in terms of the variation of the toroidal canonical momentum (delta P-phi). This analysis reveals resonant patterns at the plasma edge activated by 3D perturbations and emphasizes the relevance of nonlinear resonances. The impact of collisions and the radial electric field on the ERTL is analysed.
机译:在最近在ASDEX升级的实验中,揭示了边缘谐振传输层(ERT1)的存在作为负责外部应用3D场的测量的快速离子损失的主要传输机制。 Monte Carlo轨道编码代码ASCOT用于研究包括用MARS-F计算的等离子体响应的快速离子传输,再现与3D场的针状体模式光谱的快速离子损失的强相关性。在这项工作中,通过数值模拟与分析模型和实验测量一起呈现偏置物理学的描述,以验证结果。基于环形典型动量(Delta P-Phi)的变化来计算快速离子限制的降解。该分析揭示了通过3D扰动激活的等离子体边缘处的共振模式,并强调非线性共振的相关性。分析了碰撞和径向电场对ERTL的影响。

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