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Global analysis of ICRF wave coupling on Tore Supra

机译:Tore Supra上ICRF波耦合的整体分析

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The Tore Supra tokamak is equipped with a multi-megawatt ion cyclotron range of frequency (ICRF) system for heating and current drive. The coupling of the fast wave to the plasma, characterized by the distributed coupling resistance along the radiating straps, is a crucial issue in order to launch large RF powers. Many factors can have an effect on ICRF wave coupling. Quantitative prediction from theoretical modelling requires the knowledge of the local inhomogeneous plasma density profile in front of the antenna for running sophisticated antenna codes. In this work, we have rather followed a 'global' approach, based on Tore Supra experimental results, for the parametric study of the coupling resistance. From a large data base covering seven experimental campaigns (~2250 shots), a scaling law of the coupling resistance including the main parameters of the plasma and of the antenna configuration is established. This approach is found to be reliable for the analysis of coupling in the different scenarios: He/D_2 gas filling, gas/pellets for plasma fuelling, plasma leaning on inner wall/low field side limiter, limiter/ergodic divertor configuration, minority heating/direct electron heating. From one scenario to another, a significant variation of the coefficients of the scaling law is found. The study of these variations allows to get some insight on the main physical mechanisms which influence the ICRF wave coupling in a tokamak operation, such as the wall conditioning and recycling conditions, RF sheaths or frequency.
机译:Tore Supra托卡马克具有一个用于加热和电流驱动的多兆瓦离子回旋频率范围(ICRF)系统。为了发射大的RF功率,快速波与等离子体的耦合(其特征是沿着辐射带的分布耦合电阻)是至关重要的问题。许多因素会影响ICRF波的耦合。从理论模型进行定量预测需要了解用于运行复杂天线代码的天线前方的局部不均匀等离子体密度分布。在这项工作中,我们宁愿遵循基于Tore Supra实验结果的“全局”方法来进行耦合电阻的参数研究。从涵盖七个实验活动(〜2250发子弹)的大型数据库中,建立了包括等离子体的主要参数和天线配置在内的耦合电阻的缩放定律。发现该方法对于分析不同情况下的耦合是可靠的:He / D_2气体填充,等离子体燃料加注的气体/小丸,等离子倾斜内壁/低场侧限制器,限制器/遍历偏滤器配置,少数加热/直接电子加热。从一种情况到另一种情况,发现缩放定律的系数有显着变化。对这些变化的研究可以使我们对影响托卡马克操作中ICRF波耦合的主要物理机制有一些了解,例如壁面调节和循环利用条件,RF护套或频率。

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