Impact of triangularity on edge transport and divertor detachment: a SOLPS-ITER study of TCV L-mode plasmas

Fuente: arXiv
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Autori principali: Mombelli, Fabio, Mastrogirolamo, Andrea, Tonello, Elena, Février, Olivier, Durr-Legoupil-Nicoud, Garance, Carpita, Massimo, Subba, Fabio, Passoni, Matteo, team, the TCV, Team, the EUROfusion Tokamak Exploitation
Natura: Preprint
Pubblicazione: 2025
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author Mombelli, Fabio
Mastrogirolamo, Andrea
Tonello, Elena
Février, Olivier
Durr-Legoupil-Nicoud, Garance
Carpita, Massimo
Subba, Fabio
Passoni, Matteo
team, the TCV
Team, the EUROfusion Tokamak Exploitation
author_facet Mombelli, Fabio
Mastrogirolamo, Andrea
Tonello, Elena
Février, Olivier
Durr-Legoupil-Nicoud, Garance
Carpita, Massimo
Subba, Fabio
Passoni, Matteo
team, the TCV
Team, the EUROfusion Tokamak Exploitation
contents Negative triangularity (NT) magnetic configurations have recently gained attention as a promising route to achieve H-mode-like confinement without edge-localized modes (ELMs) and without a power threshold for access. While both core and edge confinement properties of NT have been extensively documented, consistently lower divertor target cooling and increased difficulty in achieving a detached regime have been observed. This work presents a comparative SOLPS-ITER modeling study of two Ohmic L-mode discharges in the TCV tokamak with identical divertor geometry and opposite upper triangularity. We investigate whether magnetic geometry alone can account for the experimentally observed differences in plasma detachment behavior. Simulations with identical transport coefficients reveal no significant differences between NT and positive triangularity (PT) cases, even when including drifts. A parametric scan of radial anomalous transport coefficients shows that reproducing the experimental profiles requires lower particle diffusivity in NT, consistent with reduced turbulent transport and previous findings. Furthermore, the evolution of simulated neutral pressures and recycling fluxes along a density scan reproduces experimental observations of larger neutral divertor pressure in PT, highlighting a distinct neutral dynamics in the two cases. These results support the interpretation that altered cross-field transport, rather than magnetic geometry alone, underlies the observed differences in divertor behavior between NT and PT scenarios.
format Preprint
id arxiv_https___arxiv_org_abs_2506_03966
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Impact of triangularity on edge transport and divertor detachment: a SOLPS-ITER study of TCV L-mode plasmas
Mombelli, Fabio
Mastrogirolamo, Andrea
Tonello, Elena
Février, Olivier
Durr-Legoupil-Nicoud, Garance
Carpita, Massimo
Subba, Fabio
Passoni, Matteo
team, the TCV
Team, the EUROfusion Tokamak Exploitation
Plasma Physics
Negative triangularity (NT) magnetic configurations have recently gained attention as a promising route to achieve H-mode-like confinement without edge-localized modes (ELMs) and without a power threshold for access. While both core and edge confinement properties of NT have been extensively documented, consistently lower divertor target cooling and increased difficulty in achieving a detached regime have been observed. This work presents a comparative SOLPS-ITER modeling study of two Ohmic L-mode discharges in the TCV tokamak with identical divertor geometry and opposite upper triangularity. We investigate whether magnetic geometry alone can account for the experimentally observed differences in plasma detachment behavior. Simulations with identical transport coefficients reveal no significant differences between NT and positive triangularity (PT) cases, even when including drifts. A parametric scan of radial anomalous transport coefficients shows that reproducing the experimental profiles requires lower particle diffusivity in NT, consistent with reduced turbulent transport and previous findings. Furthermore, the evolution of simulated neutral pressures and recycling fluxes along a density scan reproduces experimental observations of larger neutral divertor pressure in PT, highlighting a distinct neutral dynamics in the two cases. These results support the interpretation that altered cross-field transport, rather than magnetic geometry alone, underlies the observed differences in divertor behavior between NT and PT scenarios.
title Impact of triangularity on edge transport and divertor detachment: a SOLPS-ITER study of TCV L-mode plasmas
topic Plasma Physics
url https://arxiv.org/abs/2506.03966