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Characteristics of neutron emission profile from neutral beam heated plasmas of the Large Helical Device at various magnetic field strengths

机译:不同磁场强度的中性光束加热等离子体中子发射曲线的特性

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The neutron emission profile of deuterium plasma in the Large Helical Device was measured with a multi-sightline vertical neutron camera under various magnetic field strength conditions. It was found that the line-integrated neutron emission profile shifts outward in the co-neutral beam (NB) case and inward in the counter NB case. Here, co- and counter directions correspond to enhance and reduce the poloidal magnetic field directions, respectively. The shift becomes more significant when the magnetic field decreased in strength. The experimentally obtained neutron emission profile was compared with the orbit-following models simulated through the DELTA5D code. The calculated neutron emission profiles vary according to the magnetic field strength because of the change of beam ion orbit and the slowing down due to the plasma parameter changes. Although a relatively narrow profile was obtained in the calculations at the inboard side for the co-NB case in the relatively low field condition, the profiles obtained through calculation and experiment were almost qualitatively aligned.
机译:在不同磁场强度条件下,用多视距垂直中子相机测量了大型螺旋装置中氘等离子体的中子发射剖面。研究发现,线积分中子发射剖面在co中性束(NB)情况下向外移动,在反NB情况下向内移动。在这里,共向和反方向分别对应于增强和减小极向磁场方向。当磁场强度降低时,位移变得更加显著。将实验获得的中子发射剖面与通过DELTA5D程序模拟的轨道跟踪模型进行了比较。由于束流-离子轨道的变化和等离子体参数的变化导致的减速,计算的中子发射剖面随磁场强度的变化而变化。虽然在相对低场条件下,在co-NB壳内侧的计算中获得了相对狭窄的轮廓,但通过计算和实验获得的轮廓几乎是定性对齐的。

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