Published July 2013 | Version v1
Journal article

Simulations with the COREDIV code of DEMO discharges

  • 1. Institute of Plasma Physics and Laser Microfusion, EURATOM Association, Hery 23, 01-497 Warsaw (Poland)

Description

The reduction in divertor target power load due to radiation of sputtered and externally seeded impurities in tokamak fusion reactors is investigated. The approach is based on integrated numerical modelling of DEMO discharges using the COREDIV code, which self-consistently solves 1D radial transport equations of plasma and impurities in the core region and 2D multifluid transport in the SOL. Calculations are performed for inductive DEMO scenarios and for DEMO steady-state configurations with tungsten walls and Ar or Ne seeding. For all considered DEMO scenarios significant fusion power can be achieved. Increase in seeded impurity influx leads to the reduction in fusion power and Q-factor (defined as the ratio of fusion power to auxiliary heating power) due to plasma dilution. Total radiation appears to be almost independent of the puffing level and is dominated by core radiation (>90%). The radiation due to seeding impurity is small and the type of seeded impurity weakly affects the results. For pulsed DEMO concepts, the accessible seeding level is limited. There is no steady-state solution for stronger puffing. The solution terminates due to helium accumulation, and if confirmed by more detailed investigations, might strongly affect DEMO design. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/0029-5515/53/7/073030

Additional details

Publishing Information

Journal Title
Nuclear Fusion
Journal Volume
53
Journal Issue
7
Journal Page Range
[6 p.]
ISSN
0029-5515
CODEN
NUFUAU

INIS

Country of Publication
International Atomic Energy Agency (IAEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
44122352
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Descriptors DEI
AUXILIARY HEATING; COMPUTER CODES; HELIUM; IMPURITIES; PLASMA; SIMULATION; STEADY-STATE CONDITIONS; THERMONUCLEAR REACTORS; TOKAMAK DEVICES; TRANSPORT THEORY; TUNGSTEN; TWO-DIMENSIONAL CALCULATIONS
Descriptors DEC
CLOSED PLASMA DEVICES; ELEMENTS; FLUIDS; GASES; HEATING; METALS; NONMETALS; RARE GASES; REFRACTORY METALS; SPACE HEATING; THERMONUCLEAR DEVICES; TRANSITION ELEMENTS