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Possible influence of near SOL plasma on the H-mode power threshold

handle: 11563/134556
Possible influence of near SOL plasma on the H-mode power threshold
A strong effect of divertor configuration on the threshold power for the L-H transition (P LH ) was observed in recent JET experiments in the new ITER-like Wall (ILW) [1–3] . Following a series of EDGE2D-EIRENE code simulations with Be impurity and drifts a possible mechanism for the P LH variation with the di- vertor geometry is proposed. Both experiment and code simulations show that in the configuration with lower neutral recycling near the outer strike point (OSP), electron temperature (T e ) peaks near the OSP prior to the L -H transition, while in the configuration with higher OSP recycling T e peaks further out in the scrape-off layer (SOL) and the plasma stays in the L-mode at the same input power. Code results show large positive radial electric field (E r ) in the near SOL under lower recycling conditions leading to a large E ×B shear across the separatrix which may trigger earlier (at lower input power) edge turbulence suppression and lower P LH . Suppressed T e ‘s at OSP in configurations with strike points on vertical targets (VT) were observed earlier and explained by a geometrical effect of neutral recycling near this particular position, whereas in configurations with strike points on horizontal targets (HT) the OSP appears to be more open for neutrals (see e.g. review paper. EURATOM 633053
- Max Planck Society Germany
- University of Basilicata Italy
- Max Planck Institute for Plasma Physics Germany
- Oak Ridge National Laboratory United States
- Max-Planck-Institut für Plasmaphysik Germany
Plasma propertie, SOL, EDGE2D-EIRENE, Materials Science (miscellaneous), TK9001-9401, 612, Plasma-materials interaction, H-mode, Divertor, Nuclear Energy and Engineering, JET, Nuclear engineering. Atomic power, Plasma properties, Nuclear and High Energy Physic
Plasma propertie, SOL, EDGE2D-EIRENE, Materials Science (miscellaneous), TK9001-9401, 612, Plasma-materials interaction, H-mode, Divertor, Nuclear Energy and Engineering, JET, Nuclear engineering. Atomic power, Plasma properties, Nuclear and High Energy Physic
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