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Simulation and design of pre-ionization systems for Alborz tokamak

机译:Alborz托卡马克预电离系统的仿真与设计

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摘要

Alborz tokamak is an educational system for studying plasma phenomena in many physics and engineering experiments. A hot filament and a reverse discharge loop are used in the tokamak as the pre-ionization system. The hot cathode prepares a local initial electron density, then the reverse discharge loop trigger the ionization avalanche by means of inducing a toroidal electric field. The parameters of the hot filament are determined in order to produce the desired electron source. Filament temperature is simulated by using three-dimensional finite element method. The average values of filament temperature and electron density at the plasma core (at the end of pre-ionization process) were calculated and are about 2750 K and 10(19) m(-3), respectively. The resultant electron density and equivalent plasma resistivity due to reverse discharge loop are also calculated. In this paper, the simulation results, optimum structural style, the obtained parameters, the temperature of different parts of the filament and produced electron density are presented and discussed.
机译:Alborz tokamak是一个用于在许多物理和工程实验中研究等离子体现象的教育系统。托卡马克使用热丝和反向放电回路作为预电离系统。热阴极准备一个局部初始电子密度,然后反向放电环路通过感应环形电场触发电离雪崩。确定热丝的参数以便产生所需的电子源。纤维温度是通过三维有限元方法模拟的。计算了等离子体芯(在预电离过程结束时)的灯丝温度和电子密度的平均值,分别约为2750 K和10(19)m(-3)。还计算了由于反向放电回路而产生的电子密度和等效等离子体电阻率。本文给出并讨论了仿真结果,最佳结构形式,获得的参数,灯丝不同部位的温度以及产生的电子密度。

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