The separatrix electron density in JET, ASDEX upgrade and alcator C-Mod H-mode plasmas: A common evaluation procedure and correlation with engineering parameters
D. Silvagni , O. Grover , A. Stagni , J.W. Hughes , M.A. Miller , B. Lomanowski , G. Ciraolo , M. Dunne , T. Eich , L. Frassinetti , C. Giroud , I. Jepu , A. Kallenbach , A. Kirjasuo , A. Kuang , T. Luda , C. Perez von Thun , T. Pütterich , H.J. Sun , H. Zohm
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引用次数: 0
Abstract
The separatrix electron density is an important parameter for core-edge scenario integration in tokamak devices, as it influences plasma confinement, divertor detachment and disruption avoidance. This quantity has been measured in H-mode discharges on JET, ASDEX Upgrade and Alcator C-Mod by applying the same fitting function to Thomson scattering measurements, and by employing the same analysis technique based on scrape-off layer power balance. To estimate the power crossing the separatrix, the inter-ELM time derivative of the plasma energy has been experimentally evaluated and found to be approximately a constant fraction of the absorbed heating power. Correlations between and engineering parameters have been investigated, revealing that scales with the divertor neutral pressure in a similar manner across all devices. Additionally, when is normalized to the obtained dependency, no clear correlation with the plasma current is found. These observations are in agreement with the 2-point model, which suggests that the upstream separatrix density is mainly set by the recycling at the divertor target.
期刊介绍:
The open-access journal Nuclear Materials and Energy is devoted to the growing field of research for material application in the production of nuclear energy. Nuclear Materials and Energy publishes original research articles of up to 6 pages in length.