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Evaluation of power transfer efficiency for a high power inductively coupled radio-frequency hydrogen ion source

机译:高功率电感耦合射频氢离子源的功率传递效率评价

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摘要

Neutral beam injection (NBI) for plasma heating and current drive is necessary for International Thermonuclear Experimental reactor (ITER) tokamak. Due to its various advantages, a radio frequency (RF) driven plasma source type was selected as a reference ion source for the ITER heating NBI. The ITER relevant RF negative ion sources are inductively coupled (IC) devices whose operational working frequency has been chosen to be 1 MHz and are characterized by high RF power density (similar to 9.4 W cm(-3)) and low operational pressure (around 0.3 Pa). The RF field is produced by a coil in a cylindrical chamber leading to a plasma generation followed by its expansion inside the chamber. This paper recalls different concepts based on which a methodology is developed to evaluate the efficiency of the RF power transfer to hydrogen plasma. This efficiency is then analyzed as a function of the working frequency and in dependence of other operating source and plasma parameters. The study is applied to a high power IC RF hydrogen ion source which is similar to one simplified driver of the ELISE source (half the size of the ITER NBI source).
机译:用于等离子体加热和电流驱动的中性光束注射(NBI)对于国际热核实验反应器(磨料)TOKAMAK是必需的。由于其各种优点,选择射频(RF)驱动的等离子体源类型作为用于浸泡NBI的参考离子源。 IRER相关的RF负离子源是电感耦合(IC)设备,其操作工作频率已选择为1MHz,其特征在于高RF功率密度(类似于9.4W cm(-3))和低操作压力(周围0.3 pa)。 RF场由圆柱形腔室中的线圈产生,导致等离子体产生,然后在腔室内膨胀。本文回顾了基于该概念,基于该概念,开发了一种方法来评估RF功率转移到氢等离子体的效率。然后作为工作频率的函数和其他操作源和等离子体参数分析该效率。该研究应用于高功率IC RF氢离子源,其类似于ELISE源的一个简化驱动器(ITer NBI源的一半)。

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