Parties d'ouvrages collectifs (17)

  1. 8. Legros, J. C. (1994). Thermocapillary convection and its stability. In Space Scientific Research in Belgium: Microgravity (pp. 23-54). Bruxelles: Publication of the Federal Office for Scientific, Technical and Cultural Affairs.
  2. 9. Legros, J. C., Dupont, O., Queeckers, P., & Schwabe, D. (1993). Marangoni-Bénard instability. In P. Sahm, M. Keller, & B. Schiewe (Eds.), Research program of the German Spacelab Mission D-2 (2 ed., pp. 280-282). Koln: WPF-DLR.
  3. 10. Legros, J. C., Keller, M., & Schiewe, B. (1993). Fluid physics. In P. Sahm, M. Keller, & B. Schiewe (Eds.), Research program of the German Spacelab Mission D-2 (2 ed., pp. 259-260). Koln: WPF-DLR.
  4. 11. Schwabe, D., Dupont, O., Queeckers, P., & Legros, J. C. (1992). Experiments on Marangoni-Bénard instability problems under normal and microgravity conditions. In O. Minster (Ed.), Summary review of sounding rocket experiments in fluid science and materials sciences, Vol. 2. Final reports of sounding rocket experiments in fluid science and materials sciences (pp. 23-35). Paris: European Space Agency (ESA).
  5. 12. Dupont, O., Hennenberg, M., & Legros, J. C. (1992). Benard-Marangoni instability in a rectangular cell. In O. Minster (Ed.), Summary review of sounding rocket experiments in fluid science and materials sciences, Vol. 2. Final reports of sounding rocket experiments in fluid science and materials sciences (pp. 36-48). paris: European Space Agency (ESA).
  6. 13. Legros, J. C., Dupont, O., Queeckers, P., Van Vaerenbergh, S., & Schwabe, D. (1990). Thermohydrodynamic instabilities and capillary flows. In R. L. Sani & J. N. Koster (Eds.), Low-gravity fluid dynamics and transport phenomena (pp. 207-239). AIAA.(Progress in Astronautics and Aeronautics Series, V-130).
  7. 14. Dupont, O., Legros, J. C., Limbourg, M.-C., & Pétré, G. (1988). Fluid mechanics, Benard-Marangoni instabilities: premiminary results. In V. Pletser, A. Gonfalone, & D. Frimout (Eds.), Summary report: microgravity experiments during parabolic flights of KC-135 aircraft (pp. 90-103). Noordwijk: European Space Research and Technology Center.
  8. 15. Legros, J. C., Limbourg, M.-C., & Pétré, G. (1988). Surface tension Induced convection in presence of a surface tension minimum. In M. G. Velarde (Ed.), Physicochemical hydrodynamics: interfacial phenomena (pp. 209-223). Plenium press.
  9. 16. Legros, J. C., Sanfeld, A., & Velarde, M. G. (1987). Fluids dynamics. In H. Walter (Ed.), Fluid Sciences and Materials Science in Space: A European Perspective (pp. 83-140). Springer.
  10. 17. Legros, J. C., & Platten, J. K. (1978). Etude numérique non linéaire de la convection libre à deux dimensions. In J. C. Legros (Ed.), Les instabilitiés hydrodynamiques en convection libre, forcée et mixte (pp. 152-169). Springer.(Lecture notes in physics, 72).
  11.   Articles dans des revues avec comité de lecture (278)

  12. 1. Braibanti, M., Galand, Q., Gaponenko, Y., Legros, J. C., Mialdun, A., Shevtsova, V., Van Vaerenbergh, S., Yasnou, V., et al. (2019). European Space Agency experiments on thermodiffusion of fluid mixtures in space. The European physical journal. E. Soft matter, 42(7), 86. doi:10.1140/epje/i2019-11849-0
  13. 2. Legros, J. C., Lutoshkina, O., Piskunov, M. M., & Voytkov, I. (2018). Water drops with graphite particles triggering the explosive liquid breakup. Experimental thermal and fluid science, 96, 154-161. doi:10.1016/j.expthermflusci.2018.03.003

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