Physics
Scientific paper
Aug 2006
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2006p%26ss...54..719m&link_type=abstract
Planetary and Space Science, Volume 54, Issue 8, p. 719-725.
Physics
3
Scientific paper
The stability of a dusty plasma with sheared rotational flows is investigated. Using the fluid model together with the Bayly nonmodal approach, the inhomogeneous partial differential equations governing short-wavelength perturbations at the center of a rotational flow field or vortex structure are obtained. The effects of flow eccentricity, strength of the flow shear, as well as concentration of dust grains on the stability of the perturbations are investigated numerically. It is found that flow shear can cause secondary Rayleigh Taylor instability of a rotational flow.
Chen Yin-Hua
Gan Bao-Xia
Ma Jun
Yu M. Y.
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