Published October 2011
| Version v1
Journal article
A new simulation method of geodesic acoustic mode in toroidal plasmas by using band-limited white noise in a δf neoclassical transport code
Creators
- 1. National Inst. for Fusion Science, Toki, Gifu (Japan)
- 2. Graduate Univ. for Advanced Studies (Sokendai), Toki, Gifu (Japan)
Description
FORTEC-3D code, which solves the drift-kinetic equation for torus plasmas and radial electric field using the δf Monte Carlo method, has developed to study the variety of issues relating to neoclassical transport phenomena in magnetic confinement plasmas. Here the numerical techniques used in FORTEC-3D are briefly reviewed, and recent progress in the simulation method to simulate GAM oscillation is also explained. A band-limited white noise term is introduced in the equation of time evolution of radial electric field to excite GAM oscillation, which enables us to analyze GAM frequency with fine resolution even in the case the collisionless GAM damping is fast. (author)
Availability note (English)
Available from http://dx.doi.org/10.15669/pnst.2.72Additional details
Identifiers
- DOI
- 10.15669/pnst.2.72;
Publishing Information
- Journal Title
- Progress in Nuclear Science and Technology
- Journal Volume
- 2
- Journal Page Range
- p. 72-77
- ISSN
- 2185-4823
Conference
- Title
- Joint international conference of the 7th supercomputing in nuclear application and the 3rd Monte Carlo
- Acronym
- SNA+MC 2010
- Dates
- 17-21 Oct 2010
- Place
- Tokyo (Japan)
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 49052000
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- DISTRIBUTION FUNCTIONS; ELECTRIC FIELDS; F CODES; FOKKER-PLANCK EQUATION; GEODESICS; LANDAU DAMPING; LHD DEVICE; MAGNETIC FIELDS; MAGNETIC FLUX; MAXWELL EQUATIONS; MONTE CARLO METHOD; PLASMA SIMULATION; PLASMA WAVES; RANDOMNESS; TOROIDAL CONFIGURATION
- Descriptors DEC
- ANNULAR SPACE; CALCULATION METHODS; CLOSED CONFIGURATIONS; CLOSED PLASMA DEVICES; COMPUTER CODES; CONFIGURATION; DAMPING; DIFFERENTIAL EQUATIONS; EQUATIONS; FUNCTIONS; MAGNETIC FIELD CONFIGURATIONS; PARTIAL DIFFERENTIAL EQUATIONS; SIMULATION; SPACE; THERMONUCLEAR DEVICES
Optional Information
- Notes
- 27 refs., 4 figs.