EHD self-modulation of capillary-gravity waves on a liquid layer of uniform depth

Citation
Mf. El-sayed et Dk. Callebaut, EHD self-modulation of capillary-gravity waves on a liquid layer of uniform depth, PHYSICA A, 269(2-4), 1999, pp. 235-251
Citations number
54
Categorie Soggetti
Physics
Journal title
PHYSICA A
ISSN journal
03784371 → ACNP
Volume
269
Issue
2-4
Year of publication
1999
Pages
235 - 251
Database
ISI
SICI code
0378-4371(19990715)269:2-4<235:ESOCWO>2.0.ZU;2-9
Abstract
The electrohydrodynamic self-modulational of capillary-gravity waves on the surface of a dielectric fluid layer of finite depth subjected to a tangent ial electric field is investigated by using the method of multiple scales. A nonlinear Schrodinger equation for the complex amplitude of quasi-monochr omatic travelling waves is derived. The stability characteristics of a wave train are examined on the basis of the nonlinear Schrodinger equation. It is demonstrated, for the pure hydrodynamical case, that the capillary-gravi ty waves are modulationally stable for the wavenumbers and the liquid depth s belonging to three stable regions. The introduction of the electric field has a stabilizing effect for small values of the wavenumber k in the first region; it does not have a significant effect in the second region; and it has a destabilizing effect in the third region. Higher values of the elect ric field: generate two new regions of stability and a new unstable region, however related to the previous ones. Further increasing the electric fiel d decreases the first new stable region, while the second new stable region decreases and the new unstable region increases. Therefore, the effect of the electric field is different for the different regions of stability, and this effect is more strong if the dielectric constant of the upper fluid i s less than the one of the lower fluid. (C) 1999 Elsevier Science B.V. All rights reserved.