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Steady-state operation of tokamaks: key experiments, integrated modelling and technology developments on Tore Supra

机译:托卡马克的稳态运行:Tore Supra上的关键实验,集成建模和技术开发

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摘要

Key technological and physics issues related to long pulse operation required for a reactor are now being addressed int Tore Supra. This paper focuses on the experimental results from conditions where all the plasma facing components (PFCs) are actively cooled. Full steady-state plasma quantities as well as stable PFC temperature during pulses exceeding 6 min are reported. Particle balance and D retention in the steady-state are analysed. Physics phenomena related to continuous operation are observed in non-inductively driven plasmas, namely (ⅰ) a regime characterized by large sinusoidal oscillations of the central electron temperature, governed by a predator-prey mechanism of non-linear coupling between heat transport and plasma current; (ⅱ) a strong synergy effect between lower hybrid and electron cyclotron waves; (ⅲ) a peaked density profile generated by turbulent inward pinch. Integrated modelling activity at Tore Supra is also reported.
机译:与反应堆所需的长脉冲操作有关的关键技术和物理问题现在正在int Tore Supra中得到解决。本文重点研究了所有面向等离子体的组件(PFC)都被主动冷却的条件下的实验结果。据报道,在超过6分钟的脉冲期间,全稳态血浆量以及PFC温度稳定。分析了稳态下的颗粒平衡和D保留。在非感应驱动的等离子体中观察到了与连续运行有关的物理现象,即(ⅰ)一种以中心电子温度的大正弦振荡为特征的状态,该状态受热传输和等离子体电流之间非线性耦合的捕食者-被捕食机制的控制。 ; (ⅱ)较低的杂波和电子回旋波之间有很强的协同作用; (ⅲ)湍流向内收缩产生的峰值密度分布。还报道了Tore Supra的集成建模活动。

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