location: Current position: Home >> Scientific Research >> Paper Publications

The simulation of the application of quasi-snowflake magnetic configuration on the EAST new lower tungsten divertor

Hits:

Indexed by:期刊论文

Date of Publication:2021-02-02

Journal:FUSION ENGINEERING AND DESIGN

Volume:158

ISSN No.:0920-3796

Key Words:EAST; SOLPS-ITER; Quasi-snowflake divertor; Neon seeding

Abstract:In this work, the predicted application of the quasi-snowflake (QSF) magnetic equilibrium on the EAST new designed lower divertor shape is presented and compared with the conventional magnetic configuration by using SOLPS-ITER simulation. The performance of heat flux control, power dissipation of the QSF divertor (QSFD) are studied on the potential EAST new upgrade lower tungsten (W) divertor. The results indicate that QSFD could significantly increase the connection length and flux expansion, thus reduce the heat flux loads to the target significantly. By considering the neon (Ne) impurity seeding, the simulation result shows that the QSFD has higher power dissipation than that of standard divertor (SD), which is caused by the different Ne particle dis-tribution in SD and QSFD.

Pre One:Modelling of deuterium retention and outgassing in self-damaged tungsten under low-energy atomic D flux irradiation: The effects of surface processes

Next One:Investigation of the particle accumulation effects on the power exhaust of snowflake minus divertor on HL-2M tokamak by SOLPS-ITER