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雾化与喷雾
影响因子: 1.262 5年影响因子: 1.518 SJR: 0.814 SNIP: 1.18 CiteScore™: 1.6

ISSN 打印: 1044-5110
ISSN 在线: 1936-2684

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雾化与喷雾

DOI: 10.1615/AtomizSpr.2013007520
pages 165-191

ELECTROHYDRODYNAMIC INSTABILITY OF LIQUID SHEET SATURATING POROUS MEDIUM WITH INTERFACIAL SURFACE CHARGES

Mohamed F. El-Sayed
Department of Mathematics, Faculty of Education, Ain Shams University, Heliopolis (Roxy), Cairo, Egypt; Department of Mathematics, College of Science, Qassim University, P. O. Box 6644, Buraidah 51452, Saudi Arabia
M. H. M. Moussa
Department of Mathematics, Faculty of Education, Ain Shams University, Heliopolis, Roxy, Cairo, Egypt
Ahmed A. A. Hassan
Department of Mathematics, Faculty of Education, Ain Shams University, Heliopolis Cairo, Egypt
N. M. Hafez
Department of Mathematics, Faculty of Education, Ain Shams University, Heliopolis, Roxy, Cairo, Egypt

ABSTRACT

The linear stability analysis of a two-dimensional incompressible leaky dielectric viscous liquid sheet, saturating porous medium of the Brinkman (or Darcy) types, surrounded by a hydrodynamically passive conducting medium when an electric field is applied parallel to the initially flat bounding fluid interfaces and admitting surface charges has been investigated. The dispersion relation is derived in each case, and the stability discussion, based numerically on the root-finding solution of the dispersion equation, has been achieved. For the Brinkman model, we found that the electric Weber number and conductivity ratio have destabilizing effects, and both the permittivity ratio and medium permeability have dual roles on the stability of the system, while the Reynolds number and porosity of porous medium have stabilizing effects. It is found also that the system is more unstable in the presence of a porous medium than in its absence. For the Darcy model, we found that the electric Weber number, permittivity ratio, and Reynolds number have stabilizing effects, and the conductivity ratio has a destabilizing effect, while both the porosity and permeability have usually stabilizing effects that decrease (or increase) by increasing the porosity (or permeability), respectively.


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