Published December 1995 | Version v1
Journal article

Line broadened quasi-linear burst model

  • 1. Texas Univ., Austin, TX (United States). Inst. for Fusion Studies

Description

A quasi-linear model is developed to produce realistic self-consistent saturation levels when modes do not overlap, and give self-consistent diffusion and wave evolution when modes do overlap. Both regimes give steady or pulsating behaviour in weakly driven systems with classical relaxation and background dissipation present. An avalanche response is demonstrated: wave momentum release caused by the overlap of closely spaced modes can produce mode overlap of more widely spaced modes (a domino effect) or the growth of modes which would be stable in systems unaffected by the diffusion of closely spaced modes. Detailed analysis and calculations are performed for the bump-on-tail instability, and extension of the method to more general problems is briefly discussed. (author). 18 refs, 7 figs

Additional details

Publishing Information

Journal Title
Nuclear Fusion
Journal Volume
35
Journal Issue
12
Journal Page Range
p. 1661-1668.
ISSN
0029-5515
CODEN
NUFUAU

Conference

Title
4. IAEA technical committee meeting on alpha particles in fusion research.
Dates
25-28 Apr 1995.
Place
Princeton, NJ (United States).

INIS

Country of Publication
International Atomic Energy Agency (IAEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
27030458
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Resource subtype / Literary indicator
Conference, Numerical Data
Descriptors DEI
ALFVEN WAVES; ALPHA PARTICLES; BUMP-IN-TAIL INSTABILITY; DIFFUSION; DISTRIBUTION FUNCTIONS; LINE BROADENING; MATHEMATICAL MODELS; NONLINEAR PROBLEMS; PLASMA SIMULATION; QUASILINEAR PROBLEMS; SELF-CONSISTENT FIELD; TAIL IONS; THEORETICAL DATA; TIME DEPENDENCE; TWO-STREAM INSTABILITY
Descriptors DEC
CHARGED PARTICLES; DATA; HELIUM IONS; HYDROMAGNETIC WAVES; INFORMATION; INSTABILITY; IONIZING RADIATIONS; IONS; NUMERICAL DATA; PLASMA INSTABILITY; PLASMA MICROINSTABILITIES; RADIATIONS; SIMULATION