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Review of recent experiments on the T-10 tokamak with all metal wall

机译:回顾T-10全金属壁托卡马克的实验

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Transition to an all-metal wall was realized on T-10 by replacement of graphite limiters with tungsten ones. Light impurity levels remained high and W accumulation in the plasma core was revealed. A movable lithium (Li) limiter was added to investigate the possibility of the limitation of tungsten and light impurity levels in plasma. For the first time, tokamak results on tungsten protection with Li were obtained in OH and ECRH regimes. After lithization the tungsten density in the core dropped more than an order of magnitude, while W influx into plasma decreased 2-4 times. Drastic drops of light impurities in plasma were observed together with improvement of energy confinement time and density limit values. Nevertheless, Li levels in plasma remained low in both OH and ECRH regimes. Li density in the core as low as 0.5% of n_e was obtained. Tungsten transport in T-10 plasma was investigated and results on prevention of W accumulation with central ECRH were obtained. Effects of plasma exposure on ITER-grade tungsten plates from limiters were studied. Investigations of density fluctuation with correlation reflectometry confirmed a decrease of fluctuation amplitude on high field side. Modeling showed that this effect can be, to a great extent, explained by the non-locality of reflectometry. Toroidal correlations at a distance of 2.5 m along field lines were studied. Three-wave interaction between geodesic acoustic modes and broad-band turbulence was found by analysis of heavy ion beam probe diagnostics data. The possibility of plasma current control and the prevention of non-thermal electron beams formation at density limit disruption by means of ECR heating and the controlled operation of OH power supply system has been demonstrated. The study of plasma density decay after gas puff switch off during density ramp-up phase in OH regimes and the effect of 'density pump out' during ECRH showed that both effects can be explained by the assumption regarding electron transport growth upon reaching marginal pressure profile. A new type of internal transport barrier in the narrow zone near q=1 surface has been found.
机译:在T-10上,通过用钨制限位器代替石墨限位器,实现了向全金属壁的过渡。轻杂质水平仍然很高,并且揭示了等离子体核中的W积累。添加了可移动的锂(Li)限制器,以研究限制等离子体中钨和轻杂质水平的可能性。首次在OH和ECRH方案中获得了用Li进行钨保护的托卡马克试验结果。锂化后,纤芯中的钨密度下降了一个数量级以上,而流入等离子体的钨下降了2-4倍。观察到血浆中大量的轻质杂质滴以及能量限制时间和密度极限值的改善。尽管如此,在OH和ECRH方案中血浆中的Li含量仍然很低。芯中的Li密度低至n_e的0.5%。研究了钨在T-10等离子体中的迁移,并获得了通过中心ECRH防止W积累的结果。研究了限制器对等离子体暴露对ITER级钨极板的影响。用相关反射法对密度波动的研究证实了高场侧波动幅度的减小。建模表明,这种影响在很大程度上可以由反射计的非局部性来解释。研究了沿磁力线2.5 m处的环形相关性。通过分析重离子束探针的诊断数据,发现了测地线声模与宽带湍流之间的三波相互作用。已经证明了通过ECR加热和OH电源系统的受控操作来控制等离子体电流并防止在密度极限破坏下形成非热电子束的可能性。对OH模式下在密度上升阶段在抽气关闭后关闭等离子体后等离子体密度衰减的研究以及ECRH期间“密度抽出”的影响表明,两种影响都可以通过关于达到临界压力分布时电子传输增长的假设来解释。在q = 1表面附近的狭窄区域中发现了一种新型的内部运输壁垒。

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