ICRF Wall Conditioning: Present Status and Developments for Future Superconducting Fusion Machines
Creators
- Lyssoivan, A.1
- Koch, R.1
- Van Eester, D.1
- Vervier, M.1
- Louche, F.1
- Lerche, E.1
- Ongena, J.1
- Paul, M. K.1
- Van Schoor, M.1
- Van Wassenhove, G.1
- Weynants, R.1
- Noterdaeme, J.-M.2, 3
- Philipps, V.4
- Sergienko, G.4
- Esser, H. G.4
- Laengner, R.4
- Marchuk, O.4
- Schmitz, O.4
- Unterberg, B.4
- Rohde, V.3
- and others
- TEXTOR Team
- TORE SUPRA Team
- ASDEX Upgrade Team
- JET EFDA Contributors
- URAGAN-2M Team
- LHD Team
- EAST Team
- KSTAR Team
- 1. Laboratory for Plasma Physics-ERM/KMS, Association Euratom-Belgian State, 1000 Brussels (Belgium)
- 2. Gent University, EESA Department, B-9000 Gent (Belgium)
- 3. Max-Planck Institut fuer Plasmaphysik, Euratom Association, 85748 Garching (Germany)
- 4. Institut fuer Energieforschung-Plasmaphysik FZ Juelich, Euratom Association, 52425 Juelich (Germany)
Description
ITER and future superconducting fusion machines need efficient wall conditioning techniques for routine operation in between shots in the presence of permanent high magnetic field for wall cleaning, surface isotope exchange and to control the in-vessel long term tritium retention. Ion Cyclotron Wall Conditioning (ICWC) based on the ICRF discharge is fully compatible and needs the presence of the magnetic field. The present paper focuses on the principal aspects of the ICWC discharge performance in large-size fusion machines: (i) neutral gas RF breakdown with conventional ICRF heating antennas, (ii) antenna coupling with low density (∼1017 m-3) RF plasmas and (iii) ICWC scenarios with improved RF plasma homogeneity in the radial and poloidal directions. All these factors were identified as crucial to achieve an enhanced conditioning effect (e.g. removal rates of selected 'marker' masses). All the observed effects are analyzed in terms of RF plasma wave excitation/absorption and compared with the predictions from 1-D RF full wave and 0-D RF plasma codes. Numerical modeling and empirical extrapolation from the existing machines give good evidence for the feasibility of using ICWC in ITER with the main ICRF antenna.
Additional details
Identifiers
- DOI
- 10.1063/1.3273720;
Publishing Information
- Journal Title
- AIP Conference Proceedings
- Journal Volume
- 1187
- Journal Issue
- 1
- Journal Page Range
- p. 165-172
- ISSN
- 0094-243X
- CODEN
- APCPCS
Conference
- Title
- 18. topical conference on radio frequency power in plasmas
- Dates
- 24-26 Jun 2009
- Place
- Gent (Belgium)
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 41071892
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- ABSORPTION; ANTENNAS; COMPUTERIZED SIMULATION; COUPLING; EXCITATION; EXTRAPOLATION; ICR HEATING; IONS; ISOTOPIC EXCHANGE; ITER TOKAMAK; MAGNETIC FIELDS; PERFORMANCE; PLASMA; PLASMA PRODUCTION; PLASMA SIMULATION; PLASMA WAVES; RETENTION; RF SYSTEMS; TRITIUM; WALL EFFECTS
- Descriptors DEC
- BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; CHARGED PARTICLES; CLOSED PLASMA DEVICES; ELECTRICAL EQUIPMENT; ENERGY-LEVEL TRANSITIONS; EQUIPMENT; HEATING; HIGH-FREQUENCY HEATING; HYDROGEN ISOTOPES; ISOTOPES; LIGHT NUCLEI; MATHEMATICAL SOLUTIONS; NUCLEI; NUMERICAL SOLUTION; ODD-EVEN NUCLEI; PLASMA HEATING; RADIOISOTOPES; SIMULATION; SORPTION; THERMONUCLEAR DEVICES; THERMONUCLEAR REACTORS; TOKAMAK DEVICES; TOKAMAK TYPE REACTORS; YEARS LIVING RADIOISOTOPES
Optional Information
- Notes
- (c) 2009 American Institute of Physics
- Collaborations
- TEXTOR Team; TORE SUPRA Team; ASDEX Upgrade Team; JET EFDA Contributors; URAGAN-2M Team; LHD Team; EAST Team; KSTAR Team