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Gas puffing by molecular beam injection in Aditya tokamak

机译:分子束注入法在阿迪亚托卡马克中吹气

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Plasma density control is a prime requirement of tokamak plasma. Various methods are used for fuelling the gas for tokamak plasma. Gas fuelling in tokamak with molecular beam injection is developed for efficient gas injection during the plasma discharge. The penetration depth of the injected molecular beam is more than normal gas puffing. Due to more penetration and very less divergence of beam, (1) wall loading due to fuel gas reduces causing reduction in recycling, and (2) there is an increase in the fuelling efficiency. A supersonic molecular beam injection (MBI) system for Aditya tokamak is developed in house by modifying a piezoelectric gas inlet valve and using 400 μm diameter nozzle at 2-5 kg/cm~2 gas pressure. This valve is mounted directly on the Aditya vacuum vessel. Experiments are performed with this MBI system by puffing hydrogen gas of different pulse duration, different number of pulses at various time of tokamak discharge. The change in cord average electron density for different MBI gas pulse sequence is studied. In the present experiment, the plasma density could be raised by 1.5 times by MBI.
机译:血浆密度控制是托卡马克血浆的主要要求。使用各种方法为托卡马克等离子体提供气体燃料。开发了使用分子束注入技术在托卡马克中供气的技术,可在等离子体放电过程中有效地进行气体注入。注入的分子束的穿透深度大于正常的气体膨化。由于更多的穿透力和非常小的光束发散,(1)燃料气体引起的壁负载减少,从而导致回收利用减少;(2)燃料效率提高。通过修改压电式进气阀并在2-5 kg / cm〜2的气压下使用直径为400μm的喷嘴,开发了用于Aditya托卡马克的超音速分子束注入(MBI)系统。该阀直接安装在Aditya真空容器上。使用该MBI系统通过在托卡马克放电的不同时间吹入不同脉冲持续时间,不同脉冲数的氢气来进行实验。研究了不同MBI气体脉冲序列的帘线平均电子密度的变化。在本实验中,MBI可将血浆密度提高1.5倍。

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