Title: Modeling transient edge plasma transport with dynamic recycling

Journal Article · · Physics of Plasmas
DOI: https://doi.org/10.1063/5.0196640 · OSTI ID:2567639

The work presents numerical simulation studies of the role that dynamic plasma recycling on the main wall and divertor target surfaces plays in transient edge plasma transport phenomena, such as edge localized modes (ELMs). The studies are performed by coupling the edge plasma transport code UEDGE [Rognlien et al., J. Nucl. Mater. 196–198, 347 (1992)] and the wall reaction–diffusion transport code FACE [Smirnov et al., Fusion Sci. Technol. 71, 75 (2017)]. The two-dimensional, time-dependent, two-way coupling of the codes, in a realistic tokamak geometry, is accomplished using the Integrated Plasma Simulator framework [Elwasif et al., in 18th Euromicro Conference on Parallel, Distributed and Network-Based Processing (PDP 2010), Pisa, Italy (IEEE, 2010), pp. 419–427] for all modeled material plasma boundaries. The simulations show that dynamic plasma recycling has substantially different characteristics on the main wall and on the divertor plates. It is demonstrated that during an ELM cycle the outer wall can dynamically absorb and release a number of particles comparable to that expelled by the ELM from the core plasma, by far exceeding the dynamic retention capacity of the divertor surfaces. The resulting evolution of the edge and divertor plasma conditions during an ELM cycle is analyzed.

Research Organization:
Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States); University of California San Diego, La Jolla, CA (United States)
Sponsoring Organization:
USDOE; USDOE Office of Science (SC), Fusion Energy Sciences (FES)
Grant/Contract Number:
AC52-07NA27344; SC0018302
OSTI ID:
2567639
Journal Information:
Physics of Plasmas, Journal Name: Physics of Plasmas Journal Issue: 4 Vol. 31; ISSN 1070-664X
Publisher:
American Institute of PhysicsCopyright Statement
Country of Publication:
United States
Language:
English

References (19)

Modelling of edge plasma dynamics with active wall boundary conditions journal February 2022
Recycling processes in tokamaks journal September 1978
A fully implicit, time dependent 2-D fluid code for modeling tokamak edge plasmas journal December 1992
Molecular dynamics simulation of deuterium trapping and bubble formation in tungsten journal March 2013
Fast pedestal, SOL and divertor measurements from DIII-D to validate BOUT++ nonlinear ELM simulations journal July 2013
Simulations of tungsten transport in the edge of JET ELMy H-mode plasmas journal July 2013
SOLPS modelling of W arising from repetitive mitigated ELMs in ITER journal August 2015
Physics of ultimate detachment of a tokamak divertor plasma journal September 2017
Multi-fluid transport code modeling of time-dependent recycling in ELMy H-mode journal June 2014
Time-dependent modeling of coupled plasma-wall dynamics journal March 2020
Plasma-material interactions in current tokamaks and their implications for next step fusion reactors journal December 2001
Chapter 4: Power and particle control journal June 2007
Diffusion-trapping modelling of hydrogen recycling in tungsten under ELM-like heat loads journal January 2016
Study of near scrape-off layer (SOL) temperature and density gradient lengths with Thomson scattering journal November 2015
Neutral recycling effects on ITG turbulence journal July 2017
Neutral impact on anomalous edge plasma transport and its correlation with divertor plasma detachment journal September 2020
Solution and Diffusion of Hydrogen in Tungsten journal May 1969
Modeling of Multispecies Dynamics in Fusion-Related Materials with FACE journal January 2017
Deuterium Transport and Trapping in Polycrystalline Tungsten journal March 1992