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Investigation of compact toroid penetration for fuelling spherical tokamak plasmas on CPD

机译:在CPD上为球形托卡马克等离子体提供燃料的紧凑环形穿透研究

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In previous Compact Toroid (CT) injection experiments on several tokamaks, although CT fuelling had been successfully demonstrated, the CT fuelling process has been not clear yet. We have thus conducted CT injection into simple toroidal or vertical vacuum magnetic fields to investigate quantitatively dynamics of CT plasmoid in the penetration process on a spherical tokamak (ST) device. Understanding the process allows us to address appropriately one of the critical issues for practical application of CT injection on reactor-grade tokamaks. In the experiment, the CT shift amount of about 0.26 m in a vertical magnetic field has been observed by using a fast camera. In addition to toroidal magnetic field, vertical one appears to affect CT trajectory in not conventional tokamak but ST devices operated at rather low toroidal fields. We have also observed CT attacks on the target plate with an IR camera. The IR image has indicated that CT shifts 39 mm at the toroidal field of 261 G. From the calorimetric measurement, an input energy due to CT impact in vacuum without magnetic fields is also estimated to be 530 J, which agrees with the initial CT kinetic energy.
机译:在先前的在几个托卡马克上的紧凑型环形(CT)注射实验中,尽管已经成功证明了CT加油,但是CT加油的过程还不清楚。因此,我们已经将CT注入到简单的环形或垂直真空磁场中,以研究在球形托卡马克(ST)装置穿透过程中CT等离子体的定量动力学。了解该过程使我们能够适当地解决在反应堆级托卡马克上实际应用CT注射的关键问题之一。在该实验中,已经通过使用快速照相机观察到了在垂直磁场中约0.26m的CT位移量。除环形磁场外,垂直磁场似乎会影响CT轨迹,这在常规托卡马克中并不影响,而是在较低环形磁场中工作的ST设备。我们还观察到了用红外摄像机对目标板上的CT攻击。红外图像表明CT在261 G的环形场上移动了39 mm。根据量热法测量,在真空中没有磁场的情况下,由于CT冲击而产生的输入能量也估计为530 J,与初始CT动力学相符。能源。

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