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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Mach probe measurements of peripheral plasma rotation evolution during L-H transition and ITB decay in the TUMAN-3M tokamak
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Mach probe measurements of peripheral plasma rotation evolution during L-H transition and ITB decay in the TUMAN-3M tokamak

机译:在TUMAN-3M托卡马克中L-H过渡和ITB衰减期间外围等离子体旋转演变的马赫探针测量

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摘要

Radial electric field and associated sheared plasma rotation is known to play crucial role in the turbulent transport suppression and improved confinement development. Toroidal and poloidal rotation velocity evolutions at the plasma edge were studied on the TUMAN-3M tokamak using four-tip movable Mach probe. Measurements were performed in two modes of plasma confinement: H-mode transition (featured by peripheral transport barrier formation), and transient internal transport barrier (ITB) formation; both in ohmic heating scenario. The measurements were performed in the vicinity of a last closed flux surface, both in scrape-off layer and core plasmas. In ohmic H-mode, virtually no perturbation of toroidal rotation velocity was observed, whereas poloidal rotation velocity profile underwent gradual evolution after the transition. Surprisingly, poloidal rotation changed not in tact with radial electric field, but followed density gradient built up at the edge transport barrier region. In transient ITB scenario, a noticeable perturbation of toroidal rotation velocity was observed just after the ITB decay, indicating, probably, the outflux of the toroidal momentum due to confinement degradation. The Mach probe data obtained in both the scenarios are compared to available data on plasma density and temperature profiles, radial electric field and rotation velocity of impurity ions.
机译:已知径向电场和相关的剪切等离子体旋转在抑制湍流输运和改善封闭发展方面起着至关重要的作用。使用四尖端可移动Mach探针在TUMAN-3M托卡马克上研究了等离子体边缘的环形和极向旋转速度演变。以等离子体限制的两种模式进行测量:H模式转变(以外围传输垒形成为特征)和瞬态内部传输垒(ITB)形成;都在欧姆加热的情况下。在刮除层和芯等离子体中都在最后一个封闭的通量表面附近进行测量。在欧姆H模式下,几乎没有观察到环向旋转速度的扰动,而极向旋转速度分布在过渡后经历了逐渐演变。出人意料的是,极向旋转并没有随径向电场而变化,而是跟随在边缘传输势垒区域建立的密度梯度。在瞬态ITB情况下,在ITB衰减之后,便观察到了明显的环形旋转速度扰动,这表明可能是由于约束退化而导致的环形动量外流。将在两种情况下获得的马赫探针数据与有关等离子体密度和温度曲线,径向电场和杂质离子的旋转速度的可用数据进行比较。

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