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Vessel eddy current characteristics in SST-1 tokamak

机译:SST-1托卡马克中的容器涡流特性

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Eddy current distribution in the vacuum vessel of the Steady state superconducting (SST-1) tokamak has been determined from the experimental data obtained using an array of internal voltage loops (flux loop) installed inside the vacuum vessel. A simple circuit model has been employed. The model takes into account the geometric and constructional features of SST-1 vacuum vessel. SST-1 vacuum vessel is a modified 'D' shaped vessel having major axis of 1.285 m and minor axis of 0.81 m and has been manufactured from non-magnetic stainless steel. The Plasma facing components installed inside the vacuum vessel are graphite blocks mounted on Copper Chromium Zirconium (CuCrZr) heat sink plates on inconel supports. During discharge of the central solenoid, eddy currents get generated in the vacuum vessel and passive supports on it. These eddy currents influence the early magnetic NULL dynamics and plasma break-down and start-up characteristics. The computed results obtained from the model have been benchmarked against experimental data obtained in large number of SST-1 plasma shots. The results are in good agreement. Once bench marked, the calculated eddy current based on flux loop signal and circuit equation model has been extended to the reconstruction of the overall B- field contours of SST-1 tokamak in the vessel region. A comparison of the field lines with and without the plasma column in identical conditions of the central solenoid and equilibrium field profiles has also been done with an aim to quantify the diagnostics responses in vacuum shots. (C) 2016 Elsevier B.V. All rights reserved.
机译:稳态超导(SST-1)托卡马克真空容器中的涡流分布已根据使用安装在真空容器内部的内部电压回路(磁通回路)阵列获得的实验数据确定。已经采用了简单的电路模型。该模型考虑了SST-1真空容器的几何和结构特征。 SST-1真空容器是一种改良的“ D”形容器,其长轴为1.285 m,短轴为0.81 m,并由非磁性不锈钢制成。安装在真空容器内部的面向等离子体的组件是石墨块,该石墨块安装在因科镍合金支架上的铜铬锆(CuCrZr)散热板上。在中央螺线管放电期间,会在真空容器及其上的无源支撑中产生涡流。这些涡流会影响早期的NULL磁场动力学,等离子体击穿和启动特性。从模型中获得的计算结果已与大量SST-1等离子体发射中获得的实验数据进行了基准比较。结果非常吻合。一旦进行台标,基于通量环路信号和电路方程模型的计算涡流已扩展到重建血管区域SST-1托卡马克的整个B场轮廓。还进行了在中央螺线管和平衡场分布图相同条件下有和没有等离子柱的场线的比较,目的是量化真空注射中的诊断响应。 (C)2016 Elsevier B.V.保留所有权利。

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