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首页> 外文期刊>Atoms >Evaluation of an Oxygen Transport Coefficient in the Aditya Tokamak Using the Radial Profile of O 4+ Emissivity and the Importance of Atomic Data Used Therein
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Evaluation of an Oxygen Transport Coefficient in the Aditya Tokamak Using the Radial Profile of O 4+ Emissivity and the Importance of Atomic Data Used Therein

机译:使用O 4+发射率的径向分布评估Aditya Tokamak中的氧传输系数及其中使用原子数据的重要性

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Oxygen impurity transport in the typical discharges of the Aditya tokamak was investigated using emissivity radial profile of emissivity of the spectral line (2p3p 3 D 3 –2p3d 3 F 4 ) at 650.024 nm from the Be-like oxygen ion. This O 4+ spectral line was recorded using a 1.0 m multi-track spectrometer capable of simultaneous measurements from eight lines of sight passing through the plasma. The oxygen transport coefficients were determined by reproducing the experimentally measured emissivity profiles of O 4+ , using a one-dimensional impurity transport code, STRAHL, and photon emissivity coefficient (PEC) belonging to that transition. The PEC values were obtained from both ADAS and NIFS atomic databases. Using both the databases, much higher values of diffusion coefficients compared to the neo-classical values were observed in both high and low magnetic field edge regions of typical Aditya tokamak Ohmic plasma. Although, almost similar profiles of diffusion coefficients were obtained using PEC values from both databases, the magnitude differs considerably. The maximum values of diffusion coefficients in the plasma edge at low field side of tokamak were ~45 and ~25 m 2 ·s ?1 when modeling was done using the ADAS and NIFS databases, respectively. Further analysis on the atomic data used in the calculation indicates that the difference in diffusion coefficients is mainly related to the variation in the values of atomic data of the two databases.
机译:使用光谱线(2p3p 3d 3 -2p3d 3 f 4)的发射率径向轮廓在650.024nm,从蜂状氧离子在650.024nm处研究了Aditya Tokamak的典型放电中的氧气杂质传输。使用能够通过通过等离子体的八条视线同时测量的1.0M多轨道光谱仪进行记录该O 4+光谱线。通过使用属于该转变的一维杂质传输代码,斯特拉尔和光子发射率系数(PEC)来再现O 4+的实验测量的发射率分布来确定氧传输系数。 PEC值是从ADAS和NIFS原子数据库获得的。在典型的Aditya Tokamak欧姆等离子体的高低磁场边缘区域中观察到与新经典值相比,使用两个数据库,扩散系数的更高值。尽管,使用来自两个数据库的PEC值获得的几乎类似的扩散系数的配置,但幅度大大不同。当使用ADAS和NIFS数据库进行建模时,在Tokamak的低场侧的等离子体边缘中的漫射系数的最大值为45〜25m 2·s?1。关于计算中使用的原子数据的进一步分析表明扩散系数的差异主要与两个数据库的原子数据值的变化相关。

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