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Overview of the JET results in support to ITER

机译:JET概述有助于ITER

摘要

The 2014–2016 JET results are reviewed in the light of their significance for optimising the ITER research plan for the active and non-active operation. More than 60 h of plasma operation with ITER first wall materials successfully took place since its installation in 2011. New multi-machine scaling of the type I-ELM divertor energy flux density to ITER is supported by first principle modelling. ITER relevant disruption experiments and first principle modelling are reported with a set of three disruption mitigation valves mimicking the ITER setup. Insights of the L–H power threshold in Deuterium and Hydrogen are given, stressing the importance of the magnetic configurations and the recent measurements of fine-scale structures in the edge radial electric. Dimensionless scans of the core and pedestal confinement provide new information to elucidate the importance of the first wall material on the fusion performance. H-mode plasmas at ITER triangularity (H  =  1 at β N ~ 1.8 and n/n GW ~ 0.6) have been sustained at 2 MA during 5 s. The ITER neutronics codes have been validated on high performance experiments. Prospects for the coming D–T campaign and 14 MeV neutron calibration strategy are reviewed.
机译:根据其对于优化ITER研究计划的积极性和非积极性的意义,回顾了2014–2016年JET的结果。自2011年安装以来,成功地使用ITER第一壁材料进行了超过60 h的等离子运行。第一原理建模支持I-ELM型分流器能量通量密度向ITER的新多机缩放。报告了ITER相关的破坏实验和第一原理模型,其中包括一组模拟ITER装置的三个破坏缓解阀。给出了氘和氢中L–H功率阈值的见解,强调了磁性结构的重要性以及最近在边缘径向电学中对微尺度结构的测量。核心和基座限制的无量纲扫描提供了新的信息,以阐明第一壁材料对融合性能的重要性。在ITER三角形处的H型等离子体(在βN〜1.8和n / n GW〜0.6时H = 1)在5 s内维持在2 MA下。 ITER中子学代码已通过高性能实验验证。回顾了即将开展的D–T活动和14 MeV中子校准策略的前景。

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