Effects of General Rotation and a Horizontal Magnetic Field on the Rayleigh–Taylor Instability of Three-Fluid Layer in Porous Media
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://link.springer.com/content/pdf/10.1007/s13369-010-0004-x.pdf
Reference57 articles.
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3. Remington BA, Weber SV, Marinak MM, Haan SW, Kilkenny JK, Wallace RJ, Dimonte G (1995) Single-mode and multimode Rayleigh–Taylor experiments on Nova. Phys Plasmas 2: 241–255
4. Knauer JP, Betti R, Bradley DK, Boehly TR, Collins TJB, Goncharov VN, McKenty PW, Meyerhofer DD, Smalyuk VA, Verdon CP, Glendinning SG, Kalantar DH, Watt RG (2000) Single-mode Rayleigh–Taylor growth-rate measurements on the OMEGA laser system. Phys Plasmas 7: 338–345
5. Finn JM (1993) Nonlinear interaction of Rayleigh–Taylor and shear instabilities. Phys Fluids B 5: 415–432
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1. A viscous magnetohydrodynamic Kelvin–Helmholtz instability in the interface of two fluid layers: Part I. Basic mechanism;Astrophysics and Space Science;2019-05
2. Modeling and Optimization of Anisotropic Viscoelastic Porous Structures Using CQBEM and Moving Asymptotes Algorithm;Arabian Journal for Science and Engineering;2018-11-29
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