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Overview of recent TJ-II stellarator results

机译:最新TJ-II恒星仪结果概述

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The main results obtained in the TJ-II stellarator in the last two years are reported. The most important topics investigated have been modelling and validation of impurity transport, validation of gyrokinetic simulations, turbulence characterisation, effect of magnetic configuration on transport, fuelling with pellet injection, fast particles and liquid metal plasma facing components.As regards impurity transport research, a number of working lines exploring several recently discovered effects have been developed: the effect of tangential drifts on stellarator neoclassical transport, the impurity flux driven by electric fields tangent to magnetic surfaces and attempts of experimental validation with Doppler reflectometry of the variation of the radial electric field on the flux surface. Concerning gyrokinetic simulations, two validation activities have been performed, the comparison with measurements of zonal flow relaxation in pellet-induced fast transients and the comparison with experimental poloidal variation of fluctuations amplitude. The impact of radial electric fields on turbulence spreading in the edge and scrape-off layer has been also experimentally characterized using a 2D Langmuir probe array. Another remarkable piece of work has been the investigation of the radial propagation of small temperature perturbations using transfer entropy. Research on the physics and modelling of plasma core fuelling with pellet and tracer-encapsulated solid-pellet injection has produced also relevant results. Neutral beam injection driven Alfvenic activity and its possible control by electron cyclotron current drive has been examined as well in TJ-II. Finally, recent results on alternative plasma facing components based on liquid metals are also presented.
机译:报告了最近两年在TJ-II恒星仪中获得的主要结果。所研究的最重要主题是杂质传输的建模和验证,陀螺动力学仿真的验证,湍流表征,磁性结构对传输的影响,注入颗粒燃料,快速粒子和液态金属等离子表面组件的燃料。探索了几个最近发现的影响的工作线的数量:切向漂移对恒星新古典运动的影响,由与磁表面相切的电场驱动的杂质通量以及利用多普勒反射法对径向电场变化进行实验验证的尝试在助焊剂表面上。关于陀螺动力学模拟,已经进行了两项验证活动,即与颗粒诱导的快速瞬变中的纬向流弛豫的测量结果进行比较,以及与波动幅度的实验倍性变化进行比较。径向电场对湍流在边缘和刮除层中扩散的影响也已通过二维Langmuir探头阵列进行了实验表征。另一项杰出的工作是利用传递熵研究了小的温度扰动的径向传播。球团和示踪剂包裹的固体颗粒注入等离子核燃料的物理和模型研究也产生了相关的结果。 TJ-II中还研究了中性束注入驱动的Alvvenic活动及其通过电子回旋电流驱动的可能控制。最后,还介绍了基于液态金属的其他面向等离子体的部件的最新结果。

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