Published March 2005 | Version v1
Journal article

The mitigation effect of sheared axial flow on the rayleigh-taylor instability in Z-pinch plasma

  • 1. China Academy of Engineering Physics, Beijing (China). Graduat School
  • 2. Institute of Applied Physics and Computational Mathematics, Beijing (China)

Description

A magnetohydrodynamic formulation is derived to investigate the mitigation effects of the sheared axial flow on the Rayleigh-Taylor (RT) instability in Z-pinch plasma. The dispersion relation of the compressible model is given. The mitigation effects of sheared axial flow on the Rayleigh-Taylor instability of Z-pinch plasma in the compressible and incompressible models are compared respectively, and the effect of compressible on the instability of system with sheared axial flow is discussed. It is found that, compressibility effects can stabilize the Rayleigh-Taylor/Kelvin-Helmholtz (RT/KH) instability, and this allows the sheared axial flow mitigate the RT instability far more effectively. The authors also find that, at the early stage of the implosion, if the temperature of the plasma is not very high, the compressible model is much more suitable to describing the state of system than the incompressible one. (author)

Additional details

Publishing Information

Journal Title
Nuclear Fusion and Plasma Physics
Journal Volume
25
Journal Issue
1
Journal Page Range
p. 15-21
ISSN
0254-6086

Optional Information

Notes
4 figs., 19 refs.