|
[1] E. J. Brian and C. A. Lin, Precipitation from vertical motion: A statistical diagnostic scheme, Journal of Applied Meteorology 42(6) (2003), 671-685.
[2] E. Danho and R. N. Djué, A model for assessing relative humidity in a convective atmospheric parcel including an entrainment of surrounding air, Rev. Iv. Sci. Tech. 5 (2004), 71-84.
[3] R. N. Djué and E. Danho, Impact of the atmospheric impulsional instability on the production of raindrops in active warm clouds modelling, African Journal of Sciences and Technology 7(2) (2006), 134-143.
[4] R. N. Djué and E. Danho, Active warm clouds modelling and analysis of entrainment effect on raindrops production, Rev. Iv. Sci. Tech. 7 (2006), 91-108.
[5] R. N. Djué, Modélisation des interactions et transferts dans les couches nuageuses, Thèse de Doctorates-sciences de l’Université d’Abidjan-Cocody, 2004, pp. 154.
[6] Roger N’dri Djué, Emile Danho, Moustapha Karam Sangaré, Bakari Coulibaly and Kouassi Kouassi S. Yanga, Model development for the evolution of active warm clouds and analysis of the environmental atmospheric hygrometry impact on raindrops production, Advances and Applications in Fluid Mechanics 3(1) (2008), 89-103.
[7] C. Lobry, Modèles déterministes en dynamique des populations, Ecole CIMPA Saint Louis du Sénégal, 2001.
[8] H. Pruppacher and J. Klett, Microphysics of Clouds and Precipitations, Kluwer Academic Publishers, 1997.
[9] A. H. Shapiro, The Dynamics and Thermodynamics of Compressible Fluid Flow, Vol. 1, Chap. 9, Ronald Press, New York, 1954.
[10] A. Williams and J. Hacker, Transport processes in the tropical warm pool boundary layer, Part II: Vertical structure and variability, J. Atm. Sci. 54 (1997), 2060-2082.
[11] F. Ames William, Numerical Methods for Partial Differential Equations, Academic Press, 1977. |