Ballooning mode spectrum in general toroidal systems
Description
A WKB formalism for constructing normal modes of short-wavelength ideal hydromagnetic, pressure-driven instabilities (ballooning modes) in general toroidal magnetic containment devices with sheared magnetic fields is developed. No incompressibility approximation is made. A dispersion relation is obtained from the eigenvalues of a fourth order system of ordinary differential equations to be solved by integrating along a line of force. Higher order calculations are performed to find the amplitude equation and the phase change at a caustic. These conform to typical WKB results. In axisymmetric systems, the ray equations are integrable, and semiclassical quantization leads to a growth rate spectrum consisting of an infinity of discrete eigenvalues, bounded above by an accumulation point. However, each eigenvalue is infinitely degenerate. In the nonaxisymmetric case, the rays are unbounded in a four dimensional phase space, and semiclassical quantization breaks down, leading to broadening of the discrete eigenvalues and accumulation point of the axisymmetric case into continuum bands. Analysis of a model problem indicates that the broadening of the discrete eigenvalues is numerically very small, the dominant effect being broadening of the accumulation point
Availability note (English)
MF available from INIS under the Report Number; Available from NTIS., PC A04/MF A01 as DE82012758.Files
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Additional details
Publishing Information
- Imprint Pagination
- 64 p.
- Report number
- PPPL--1890
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 14718454
- Subject category
- S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
- Descriptors DEI
- BALLOONING INSTABILITY; DISPERSION RELATIONS; EIGENVALUES; INSTABILITY GROWTH RATES; SHEAR; TOROIDAL CONFIGURATION; WKB APPROXIMATION
- Descriptors DEC
- ANNULAR SPACE; CONFIGURATION; INSTABILITY; PLASMA INSTABILITY; PLASMA MACROINSTABILITIES