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JET carbon screening experiments using methane gas puffing and its relation to intrinsic carbon impurities

机译:甲烷气化JET碳筛分实验及其与固有碳杂质的关系

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JET carbon screening experiments were performed using methane gas injection. L-Mode experiments scanned parameters influencing the JET scrape-off-layer (SOL) and/or intrinsic impurity level. Scaling relations are derived to describe methane injected into L-Mode plasmas from the JET horizontal mid-plane. L-Mode screening was 3-20 times better for plasmas connected to the divertor than for similar limited plasmas. The screening was worse for methane injection from the mid-plane and best for injection from the divertor. The screening was 1.5 - 2 times worse for H-Mode than L-Mode. Both ELM-averaged and inter-ELM H-Mode screening was documented. The screening results were used to understand the intrinsic impurity levels. Z_(eff) reduced at higher densities partly due to better carbon screening at the higher density, and partly due to decreased carbon influxes. Diverted L-Mode intrinsic carbon levels arose from both main chamber and divertor sources, while H-mode carbon primarily originated from the divertor. DIVIMP and EDGE2D were used to model the observed screening. The modelling indicated that carbon removal to the divertor required lower temperatures for Coulomb collisions to couple the impurity ions to the SOL deuterium flows. The carbon removal occurred primarily in the outer SOL regions.
机译:JET碳筛查实验是使用甲烷气注入进行的。 L模式实验扫描了影响JET刮除层(SOL)和/或固有杂质水平的参数。得出比例关系以描述从JET水平中平面注入L型等离子体的甲烷。连接到分流器的血浆的L型筛选比类似的受限血浆好3到20倍。对于从中平面注入的甲烷而言,筛查效果较差,而对于从分流器注入的筛查效果最好。 H模式的筛选比L模式的筛选差1.5-2倍。均记录了ELM平均和ELM间H模式筛选。筛选结果用于了解内在杂质水平。 Z_(eff)在较高密度下降低,部分原因是在较高密度下更好的碳筛分,部分原因是碳流入量减少。转移的L模式本征碳水平同时来自主腔室和分流器源,而H模式碳主要源自分流器。 DIVIMP和EDGE2D用于对观察到的筛选进行建模。该模型表明,将碳除去至分流器需要较低的温度以进行库仑碰撞,以将杂质离子耦合至SOL氘流。除碳主要发生在外部SOL区。

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