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Investigation on the Characteristics of Pellet Ablation in a Toroidal Plasma

机译:环形血浆中颗粒消融特征的研究

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Characteristics of a cloud ablated from an ice pellet has been investigated in detail in the JIPP T-IIU tokamak plasma by utilizing a new scheme of pellet injection system, "the injection-angle controllable system". A long "helical tail" of ablation light has been observed using CCD cameras and a high speed framing photograph in the case of on-axis and off-axis injection with the injection angle smaller than a certain value. The direction of the helical tail is found to be independent to that of the total magnetic field lines of the torus. From the experiments with the combination of two toroildal field directions and two plasma current directions, it is considered that the tail seems to rotate, in most cases, to the electron diamagnetic direction poloidally, and to the opposite to the plasma current direction toroidally. Consideration on various cross sections including charge exchange, ionization and elastic collisions leads us to the conclusion that the tail-shaped phenomena may come from the situation of charge exchange equilibrium of hydrogen ions and neutrals at extremely high density regime in the cloud. The relation of ablation behavior with plasma potential and rotation has also been studied. Potential measurements of pellet-injected plasmas using heavy ion beam probe (HIBP) method were carried out for the first time. In the case of an injection angle to be anti-parallel to the electron diamagnetic direction in the poloidl plane, the result shows that the direction of potential change is negative, and consequently the potential after the injection should be negative because it has been measured to be negative in usual ohmic plasmas without pellet injection. Thus, the direction of the "tail" structure seems to be consistent to that of the plasma potential measured, if it is considered that tail structure may be caused by the effect of the plasma potential and the rotation.
机译:通过利用颗粒喷射系统的新方案,“注射角可控系统”,在Jipp T-IIU Tokamak等离子体中详细研究了从冰颗粒中烧蚀的云的特性。使用CCD摄像机和高速框架照片在轴上和轴外注射的情况下使用CCD相机和高速框架喷射的高速框架照片观察到烧蚀光的长“螺旋尾”。发现螺旋尾的方向独立于圆环的总磁场线的方向。从两个ToroIndal场方向和两个等离子体电流方向的组合的实验中,认为尾部在大多数情况下尾部似乎旋转到电子抗磁方向,并且与等离子体电流方向的相对。关于包括电荷交换,电离和弹性碰撞的各种横截面的考虑,导致我们结论,尾状现象可能来自云中极高密度制度的氢离子和中性的电荷交换平衡的情况。还研究了与等离子体电位和旋转的消融行为的关系。使用重离子束探针(HIBP)方法进行颗粒注射等离子体的潜在测量。在注射角度的情况下,在托极平面中的电子硅磁磁方向上,结果表明电位变化方向是负的,因此喷射后的潜力应该是负的,因为它已经被测量为负在没有颗粒注射的情况下在通常的欧姆等离子体中是否定的。因此,如果认为可以由等离子体电位和旋转的效果导致尾部结构,则“尾”结构的方向似乎与测量的等离子体电位的方向一致。

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