Suppression of Rayleigh-Taylor instability using electric fields
暂无分享,去创建一个
Demetrios T. Papageorgiou | Peter G. Petropoulos | Lyudmyla L. Barannyk | P. Petropoulos | D. Papageorgiou | L. Barannyk
[1] R. Craster,et al. Dynamics and stability of thin liquid films , 2009 .
[2] W. J. Schwarz,et al. Interfacial Relaxation Overstability in a Tangential Electric Field , 1968 .
[3] J. Vanden-Broeck,et al. The influence of electric fields and surface tension on Kelvin–Helmholtz instability in two-dimensional jets , 2012 .
[4] Jean-Marc Vanden-Broeck,et al. Large-amplitude capillary waves in electrified fluid sheets , 2002, Journal of Fluid Mechanics.
[5] Dmitri Tseluiko,et al. Wave evolution on electrified falling films , 2006, Journal of Fluid Mechanics.
[6] Burt S. Tilley,et al. Dynamics and rupture of planar electrified liquid sheets , 2001 .
[7] D. Papageorgiou,et al. A global attracting set for nonlocal Kuramoto–Sivashinsky equations arising in interfacial electrohydrodynamics , 2006, European Journal of Applied Mathematics.
[8] D. A. Dunnett. Classical Electrodynamics , 2020, Nature.
[9] K. A. Semendyayev,et al. Handbook of mathematics , 1985 .
[10] J. Vanden-Broeck,et al. Interfacial capillary waves in the presence of electric fields , 2007 .
[11] J. Vanden-Broeck,et al. A new application of the Korteweg–de Vries Benjamin-Ono equation in interfacial electrohydrodynamics , 2007 .
[12] Dmitri Tseluiko,et al. Nonlinear Dynamics of Electrified Thin Liquid Films , 2007, SIAM J. Appl. Math..
[13] Michael Siegel,et al. Singularity formation during Rayleigh–Taylor instability , 1993, Journal of Fluid Mechanics.