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Measurements of the edge current evolution and comparison with neoclassical calculations during MAST H-modes using motional Stark effect

机译:使用运动斯塔克效应在MAST H模式下测量边缘电流并与新古典计算进行比较

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摘要

Edge localized modes (ELMs), that are present in most tokamak H- (high confinement) modes, can cause significant damage to plasma facing components in fusion reactors. Controlling ELMs is considered necessary and hence it is vital to understand the underlying physics. The stability of ELMs is typically expressed in terms of the pressure gradient ?p in the edge and the edge current density j _φ. Both ?p and j _φ are usually derived from profiles fitted to the measured edge density and temperature profiles, where for the calculation of j _φ neoclassical theory is used. This paper presents direct measurements of the magnetic pitch angle γ _m evolution in the edge and the derived j _φ. These provide a method to validate the j _φ as derived with neoclassical theory and they open up the possibility to find a complete, self-consistent set of edge profiles, that fit density, temperature and γ _m measurements, hence allowing for a more accurate stability analysis.
机译:大多数托卡马克H-(高约束)模式中都存在的边缘局部模式(ELM)可能对聚变反应堆中面向等离子体的组件造成重大损害。控制ELM被认为是必要的,因此了解基础物理至关重要。 ELM的稳定性通常用边缘中的压力梯度Δp和边缘电流密度j_φ表示。通常从拟合到测得的边缘密度和温度分布的轮廓中得出Δp和j_φ,其中使用j.φ的新古典理论进行计算。本文介绍了在边缘的磁俯仰角γ_m演变和导出的j_φ的直接测量值。这些提供了一种验证新古典理论派生的j_φ的方法,并且为找到一个完整的,自洽的边缘轮廓集提供了可能性,这些轮廓适合密度,温度和γ_m测量,因此可以实现更准确的稳定性分析。

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