Matthews, G., Pesticide Application Methods. 2008, John Wiley & Sons.
S. Ouled Taleb Salah, N. De Cock, M. Massinon, B. Schiffers, S. Dorbolo, F. Lebeau, Étude des potentialités des systèmes d'application contrôlée des gouttes (CDA) pour les traitements phytosanitaires en céréaliculture (synthèse bibliographique), in: Biotechnologie, Agronomie, Société et Environnement= Biotechnology, Agronomy, Society and Environment, 2016.
Rioboo, R., Voué, M., Vaillant, A., De Coninck, J., Drop impact on porous superhydrophobic polymer surfaces. Langmuir 24:24 (2008), 14074–14077.
Massinon, M., Lebeau, F., Experimental method for the assessment of agricultural spray retention based on high-speed imaging of drop impact on a synthetic superhydrophobic surface. Biosyst. Eng. 112:1 (2012), 56–64.
Boukhalfa, H., Massinon, M., Belhamra, M., Lebeau, F., Contribution of spray droplet pinning fragmentation to canopy retention. Crop Prot. 56 (2014), 91–97.
Savart, F., Mémoire sur la constitution des veines liquides lancées par des orifices circulaires en mince paroi. Ann. Chim. Phys., 53(337), 1833, 1833.
Savart, F., Mémoire sur le choc d'une veine liquide lancée contre un plan circulaire. Ann. chim., 54(56), 1833, 1833.
Clanet, C., Les nappes d'eau de félix savart. Bull. National SFP 125 (2000), 11–15.
Clanet, C., Villermaux, E., Life of a smooth liquid sheet. J. Fluid Mech. 462 (2002), 307–340.
Villermaux, E., Clanet, C., Life of a flapping liquid sheet. J. Fluid Mech. 462 (2002), 341–363.
Gordillo, J.M., Lhuissier, H., Villermaux, E., On the cusps bordering liquid sheets. J. Fluid Mech., 754, 2014, R1.
Plateau, J.A.F., Statique expérimentale et théorique des liquides soumis aux seules forces moléculaires, vol. 2. 1873, Gauthier-Villars.
Rayleigh, L., On the capillary phenomena of jets. Proc. R. Soc. Lond. 29:196–199 (1879), 71–97.
Dumouchel, C., On the experimental investigation on primary atomization of liquid streams. Exp. Fluids 45:3 (2008), 371–422.
Clanet, C., Dynamics and stability of water bells. J. Fluid Mech. 430 (2001), 111–147.
Taylor, G., The dynamics of thin sheets of fluid. III. Disintegration of fluid sheets. Proc. R. Soc. Lond. Ser. A Math. Phys. Eng. Sci. 253:1274 (1959), 313–321.
Watson, E., The radial spread of a liquid jet over a horizontal plane. J. Fluid Mech. 20:03 (1964), 481–499.
Azuma, T., Hoshino, T., The radial flow of a thin liquid film: 2nd report, liquid film thickness. Bull. JSME 27:234 (1984), 2747–2754.
De Cock, N., Massinon, M., Salah, S.O.T., Mercatoris, B., Vetrano, M.R., Lebeau, F., Dynamics of a thin radial liquid flow. Fire Saf. J. 83 (2016), 1–6.
Bohr, T., Dimon, P., Putkaradze, V., Shallow-water approach to the circular hydraulic jump. J. Fluid Mech. 254 (1993), 635–648.
Duchesne, A., Lebon, L., Limat, L., Constant Froude number in a circular hydraulic jump and its implication on the jump radius selection. Europhys. Lett., 107(5), 2014, 54002.
Dressaire, E., Courbin, L., Delancy, A., Roper, M., Stone, H.A., Study of polygonal water bells: Inertia-dominated thin-film flows over microtextured surfaces. J. Fluid Mech. 721 (2013), 46–57.
Taylor, The dynamics of thin-sheets of fluid. I. Water bells. Proc. R. Soc. A 253:1274 (1959), 289–295.
De Cock, N., Massinon, M., Nuyttens, D., Dekeyser, D., Lebeau, F., Measurements of reference ISO nozzles by high-speed imaging. Crop Prot. 89 (2016), 105–115.
Thunivumani, G., Gadgil, H., Dynamics of liquid sheet breakup in splash plate atomization. J. Fluids Eng., 140(1), 2018, 011205.
Eggers, J., Villermaux, E., Physics of liquid jets. Rep. Progr. Phys., 71(3), 2008, 036601.