Experiments, gyrokinetic simulations and transport predictions have been performed to investigate if a negative triangularity (NT) L-mode option for the DTT full power scenario would perform similarly to the positive triangularity (PT) H-mode reference scenario, avoiding the harmful edge localized modes (ELMs). The simulations show that if a beneficial effect of NT would not come from the edge-SOL region ?!"# > 0.9, one should renounce to part of the PT H-mode performance to avoid the ELMs. New dedicated experiments at TCV and AUG, with similar shapes and transport regimes, show that even with the small triangularity of the considered DTT scenarios, a beneficial effect of NT could come from ?!"# > 0.9, allowing NT L-modes to overperform corresponding PT L-modes, reaching central pressures comparable to larger power PT H-modes. For AUG, a similar central plasma performance is found with PT and NT for a PT/NT ELMy H-mode/H-mode couple of pulses and for a PT/NT non-ELMy H-mode/L-mode one, both with ECRH only. The beneficial effect of NT was shown by gyrokinetic runs to be due to an increase of the critical temperature logarithmic gradient when inverting the triangularity, with similar stiffness for positive and negative triangularity. The effect has been found in both ITG- and TEMdominant micro-instability regimes.

Negative triangularity scenarios: from TCV and AUG experiments to DTT predictions

Mariani A;Mantica P;Casiraghi I;Innocente P;
2023

Abstract

Experiments, gyrokinetic simulations and transport predictions have been performed to investigate if a negative triangularity (NT) L-mode option for the DTT full power scenario would perform similarly to the positive triangularity (PT) H-mode reference scenario, avoiding the harmful edge localized modes (ELMs). The simulations show that if a beneficial effect of NT would not come from the edge-SOL region ?!"# > 0.9, one should renounce to part of the PT H-mode performance to avoid the ELMs. New dedicated experiments at TCV and AUG, with similar shapes and transport regimes, show that even with the small triangularity of the considered DTT scenarios, a beneficial effect of NT could come from ?!"# > 0.9, allowing NT L-modes to overperform corresponding PT L-modes, reaching central pressures comparable to larger power PT H-modes. For AUG, a similar central plasma performance is found with PT and NT for a PT/NT ELMy H-mode/H-mode couple of pulses and for a PT/NT non-ELMy H-mode/L-mode one, both with ECRH only. The beneficial effect of NT was shown by gyrokinetic runs to be due to an increase of the critical temperature logarithmic gradient when inverting the triangularity, with similar stiffness for positive and negative triangularity. The effect has been found in both ITG- and TEMdominant micro-instability regimes.
2023
Istituto per la Scienza e Tecnologia dei Plasmi - ISTP
Inglese
29th IAEA Fusion Energy Conference (FEC 2023)
https://www.iaea.org/events/fec2023
16-21 October 2023
London, United Kingdom
Negative triangularity
TCV
AUG
DTT
Contribution ID: IAEA-CN-316-1703. This work has been carried out within the framework of the EUROfusion Consortium, partially funded by the European Union via the Euratom Research and Training Programme (Grant Agreement No 101052200- EUROfusion).
29
info:eu-repo/semantics/conferenceObject
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274
04 Contributo in convegno::04.02 Abstract in Atti di convegno
Mariani, A; Mantica, P; Casiraghi, I; Aucone, L; Brioschi, D; Balestri, A; Bagnato, F; Coda, S; Sauter, O; Vallar, M; Merlo, G; Ambrosino, R; Bolzonel...espandi
   Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members of the EUROfusion consortium
   EUROfusion
   H2020
   633053
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/438979
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