Revisiting artificial air cavity concept for high speed craft
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Bechert, D.W., Bruse, M., Hage, W., 2000. Experiments with three-dimensional riblets as an idealized model of shark skin. Experiments in Fluids, vol. 28. Springer Verlag, pp. 403–412.
Bell, J.W., 1935. The effect of depth of step on the water performance of a flying-boat hull model. NACA Model 11-0, NACA Technical Notes 535.
Burg, D.F., 1993. Multiple hull air ride craft. US Patent 5415120.
Butuzov, 1999, State of art in investigations and development for the ship on the air cavities, 1
Butuzov, 1999, High speed ships on the cavity: scientific base, design peculiarities and perspectives for the Mediterranean sea, III
Chaban, Y.Y., Matveev, I.I., Rogojkin, S.Y., Matveev, I.I., Ejov, M.V., 1993. High speed ships. Russian Federation Patent 20411116.
Fukuda, 2000, Frictional drag reduction with air lubricant over a super-water-repellent surface, Journal of Marine Science and Technology, 5, 123, 10.1007/s007730070009
Gökcay, S., 2001. Research and development of air cavity vessels. Final Year Project, Faculty of Naval Architecture and Ocean Engineering, Istanbul Technical University, June.
Harley, H.D., 1996. Surface effect vessel hull. US Patent 5570650.
Insel, M., 1990. An investigation into the resistance components of high speed displacement catamarans. Ph.D. Thesis, Department of Ship Science, University of Southampton.
Lee, S.-J., Lee, S., 2001. Flow field analysis of a turbulent boundary layer over a riblet surface. Experiments in Fluids, vol. 30. Springer Verlag, pp. 153–166.
Savitsky, 1976, Procedures for hydrodynamic evaluation of planing hulls in smooth and rough water, Marine Technology, 13, 381