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Title: Full time-dependent SOLPS-ITER simulation of the SPARC tokamak: actuator design for particle and divertor condition control *

Journal Article · · Nuclear Fusion

Abstract This paper presents the application of full time-dependent SOLPS-ITER simulations for actuator design in the SPARC tokamak. This study employs both the EIRENE module, a neutral solver, and the B2.5 plasma module in a time-dependent mode. This is in contrast to most SOLPS simulations, which focus on steady-state solutions, where the neutral distribution is evolved without any time limit or for a time step of 1 10 3 second, which is several orders of magnitude larger than the fluid plasma time step. The time-dependent EIRENE was tested with a fixed B2.5 background and compared with a simple conductance based model in a simplified pump chamber geometry. This comparison aimed to verify the reliability of the neutral relaxation timescale derived from the time-dependent EIRENE. Subsequently, a full time-dependent simulation was performed in a realistic geometry, with the Monte-Carlo neutral time step synchronized with the plasma fluid time step. The numerical setup of the code, including relative time steps and the size of the census data used to store Monte-Carlo particle information is considered. The full-time dependent simulations are then applied to inform the design of the SPARC louver structure, which affects divertor plasma parameters by regulating the neutral conductance from the divertor to the pump. The response of the plasma and neutral parameters was captured on a timescale that enables the design of the actuator to consider time-dependent control capability. It was found that changing the louver opacity has an equivalent effect as varying the gas throughput via puff actuation. Therefore, equivalent divertor plasma conditions can be obtained from both actuators, while the neutral pressure distribution in the pump and divertor differs for each actuator.

Research Organization:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
Sponsoring Organization:
USDOE; USDOE Laboratory Directed Research and Development (LDRD) Program; USDOE Office of Science (SC), Fusion Energy Sciences (FES)
Grant/Contract Number:
AC05-00OR22725
OSTI ID:
2427075
Journal Information:
Nuclear Fusion, Journal Name: Nuclear Fusion Journal Issue: 7 Vol. 64; ISSN 0029-5515
Publisher:
IOP PublishingCopyright Statement
Country of Publication:
IAEA
Language:
English

References (19)

Time dependent neutral gas transport in tokamak edge plasmas journal April 1995
SOLPS5 simulations of Type I ELMing H-mode at JET journal June 2009
Whole device ELM simulations journal June 2009
The new SOLPS-ITER code package journal August 2015
Predictions of core plasma performance for the SPARC tokamak journal September 2020
Divertor heat flux challenge and mitigation in SPARC journal September 2020
Overview of the SPARC tokamak journal September 2020
The effect of divertor baffling on Alcator C-Mod discharges journal May 2000
Pump plenum pressure dependence on divertor plasma parameters and magnetic geometry in the DIII-D tokamak journal September 1999
Basic divertor operation in ITER-FEAT journal February 2002
Scaling of the tokamak near the scrape-off layer H-mode power width and implications for ITER journal August 2013
Optimization of pumping performance in the EAST upgraded divertor journal April 2019
Bifurcations and oscillations in divertor plasma journal May 2019
High-resolution heat flux width measurements at reactor-level magnetic fields and observation of a unified width scaling across confinement regimes in the Alcator C-Mod tokamak journal July 2018
Speed-up of SOLPS-ITER code for tokamak edge modeling journal October 2018
Time-dependent SOLPS-ITER simulations of the tokamak plasma boundary for model predictive control using SINDy * journal March 2023
Bifurcation-like transition of divertor conditions induced by X-point radiation in KSTAR L-mode plasmas * journal June 2023
The EIRENE and B2-EIRENE Codes journal February 2005
Presentation of the New SOLPS-ITER Code Package for Tokamak Plasma Edge Modelling journal January 2016