ADITYA-U托卡马克中等离子体柱位置的磁诊断测量

IF 1.3 Q3 ORTHOPEDICS Plasma Research Express Pub Date : 2021-01-01 DOI:10.1088/2516-1067/ac2731
S. Aich, R. Kumar, T. Macwan, D. Kumavat, S. Jha, R. Tanna, K. Sathyanarayana, J. Ghosh, K. Jadeja, K. Patel, S. Patel, V. Ranjan, Madanlal Kalal, Dinesh Varia, D. Sadharkiya, D. Raju, P. Chattopadhyay, C. Gupta, Y. Saxena
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引用次数: 1

摘要

在托卡马克中,由于作用于等离子体柱上的几种力,等离子体柱倾向于水平和/或垂直移动,导致许多不良事件,包括等离子体终止。因此,为了利用稳定平衡磁场来限制等离子体柱的移动,在整个放电过程中精确测量等离子体柱的位置是必要的,并且具有良好的实时时间分辨率。等离子体柱的位置由ADITYA升级托卡马克(ADITYA- u)中的几种磁诊断装置测量,如磁拾取探头、米尔诺夫线圈、正弦余弦线圈以及磁通回路。尽管这些探针的测量原理及其结构简单,但获得等离子体柱的位置并不是很简单。所有这些磁诊断在其结构、安装位置、安装场景等方面的多样性导致不正确的位置估计,因为这些探针受到不需要的磁拾取器的不同影响。通过在ADITYA-U中引入一种基于这些探头原位校准的上述所有位置探头的标度方法,成功地消除了这些不必要的拾取,特别是由容器涡流引起的拾取。在原位标定过程中,利用探头测量正确估计中心载流导体的已知位置,从而推导出校正系数。这些校正因子用于托卡马克实验中等离子体柱位置的估计,同时适当地抵消托卡马克运行过程中其他磁体产生的磁场。对不同磁探头测得的等离子体柱位置进行了比较,并与非磁探头测得的等离子体柱位置进行了比较。
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Plasma column position measurements using magnetic diagnostics in ADITYA-U tokamak
Due to several forces acting on the plasma column in a tokamak, the plasma column tends to move horizontally and/or vertically leading to many adverse events including termination of plasma. Precise measurement of plasma column position throughout the discharge with good temporal resolution in the real time is hence necessary in order to restrict the column movement using the stabilizing equilibrium magnetic fields. The plasma column position is measured by several magnetic diagnostics such as magnetic pick-up probe, Mirnov coil, Sine-Cosine coil along with flux loops in ADITYA Upgrade tokamak (ADITYA-U). In spite of the simplicity of the measurement principle of these probes as well as of their construction, obtaining the position of the plasma column is not very straightforward. The diversity of all these magnetic diagnostics in terms of their structures, installation location, mounting scenario etc leads to improper position estimations as these probes are being affected differently by the unwanted magnetic pick-ups. These unwanted pickups, especially those arising from vessel eddies, are successfully removed by introducing a scaling method for all the above-mentioned position probes in ADITYA-U based on the in situ calibration of these probes. The correction factors are deduced by estimating the known positions of a central current carrying conductor correctly using the probe measurements during the in situ calibration. These correction factors are used for estimating the plasma column position in the tokamak experiment along with proper nullification of magnetic fields arising from other magnets during tokamak operation. The plasma column position estimation from different magnetic probes are compared with each other and also with those estimated from diagnostics other than the magnetic ones.
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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