Articles dans des revues avec comité de lecture (227)

  1. 129. Gaponenko, Y., Ryzhkov, I., & Shevtsova, V. (2010). On Flows Driven by Mechanical Stresses in a Two-Phase System. Fluid Dynamics & Materials Processing, 6(1), 75-97.
  2. 130. Shevtsova, V., Gaponenko, Y., Melnikov, D., Ryzhkov, I., & Mialdun, A. (2010). Study of thermoconvective flows induced by vibrations in reduced gravity. Acta astronautica, 66(1-2), 166-173. doi:10.1016/j.actaastro.2009.05.023
  3. 131. Shevtsova, V., Ryzhkov, I., Melnikov, D., Gaponenko, Y., & Mialdun, A. (2010). Experimental and theoretical study of vibration-induced thermal convection in low gravity. Journal of fluid mechanics, 648, 53-82. doi:10.1017/S0022112009993442
  4. 132. Mazzoni, S., Shevtsova, V., Mialdun, A., Melnikov, D., Gaponenko, Y., Lyubimova, T., & Saghir, Z. (2010). Vibrating liquids in space. Europhysics news, 41(6), 14-16. doi:10.1051/epn/2010601
  5. 133. Shevtsova, V. (2010). IVIDIL experiment onboard the ISS. Advances in space research, 46, 672-679.
  6. 134. Gaponenko, Y., Ryzhkov, I., & Shevtsova, V. (2010). On flows driven by mechanical stresses in a two-phase system. Fluid Dynamics & Materials Processing, 6(1), 75-98.
  7. 135. Mialdun, A., & Shevtsova, V. (2009). Open questions on reliable measurements of Soret coefficients. Microgravity, science and technology, 21(1-2), 31-36. doi:10.1007/s12217-008-9088-2
  8. 136. Shevtsova, V., Melnikov, D., & Nepomny Ashchy, A. (2009). New flow regimes generated by mode coupling in buoyant-thermocapillary convection. Physical review letters, 102, 134503.
  9. 137. Ryzhkov, I., & Shevtsova, V. (2009). Convective stability of multicomponent fluids in the thermogravitational column. Physical review. E, Statistical, nonlinear, and soft matter physics, 79, 026308.
  10. 138. Melnikov, D., & Shevtsova, V. (2009). Origin of axially running waves in liquid bridges. Microgravity, science and technology, 21(1-2), 53-57. doi:10.1007/s12217-008-9086-4
  11. 139. Ryzhkov, I., & Shevtsova, V. (2009). On the cross-diffusion and soret effect in multicomponent mixtures. Microgravity, science and technology, 21(1-2), 37-40. doi:10.1007/s12217-008-9081-9
  12. 140. Ryzhkov, I., & Shevtsova, V. (2009). Long-wave instability of a multicomponent fluid layer with the Soret effect. Physics of fluids, 21(1), 014102. doi:10.1063/1.3054154

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