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Investigating the Influence of Divertor Baffles on Nitrogen-Seeded Detachment in TCV with SOLPS-ITER Simulations and TCV Experiments

NUCLEAR FUSION(2025)

Ecole Polytechnique Fédérale de Lausanne (EPFL) Swiss Plasma Center (SPC)

Cited 0|Views6
Abstract
Plasma edge simulations with the SOLPS-ITER code are performed to study the influence of divertor baffles on nitrogen-seeded detachment in Tokamak & agrave; Configuration Variable (TCV) single-null, L-mode discharges. Scans of nitrogen seeding rate are conducted in both baffled and unbaffled TCV divertors, where the nitrogen seeding with baffles is found to yield lower target temperatures and heat fluxes than with baffles-only and with seeding-only. The cumulative effects of baffles and seeding on target parameters are interpreted by the two-point model. The divertor neutral density and neutral compression increase with baffles, due to lower divertor to main chamber neutral conductance, as explained by a schematic neutral transport model with baffles. The nitrogen retention, defined as the ratio of average nitrogen nuclei density in divertor and main chamber, increases with the seeding rate if baffled, and remains constant if unbaffled. At the same outboard mid-plane separatrix plasma density, the nitrogen retention with baffles is lower than the unbaffled retention at low seeding levels and is higher at high seeding levels, which is explained by the changes of nitrogen ion and neutral transport with baffles and seeding. The baffled carbon retention is higher than the unbaffled retention due to lower divertor to main chamber carbon neutral conductance. Baffles increase the divertor radiation. The predicted trends of target parameters, the distribution of neutrals and radiations are well supported by TCV experiments, though discrepancies in the absolute values remain. The simulations yield an overall colder and denser divertor, consistent with previous SOLPS-ITER simulations of Ohmically heated L-modes in TCV. The successful comparison of simulation and experiment, together with the understanding gained from the neutral transport model, increases the confidence in the SOLPS simulations for the next TCV divertor upgrade.
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tokamak,divertor detachment,nitrogen seeding,neutral baffling,SOLPS-ITER simulation
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要点】:研究通过SOLPS-ITER代码模拟和TCV实验,探讨了偏流器挡板对氮种子脱离的影响,并揭示了挡板与氮种子共同作用下的等离子体参数变化。

方法】:采用SOLPS-ITER代码对偏流器挡板影响下的TCV单-null、L模态放电进行边缘等离子体模拟。

实验】:在偏流器有挡板和无挡板条件下进行氮种子率扫描实验,使用TCV作为实验设备,模拟结果与实验数据相符,尽管在绝对值上存在差异。