Burcharth, H. F., Frigaard, P., Uzeanga, J, Berenguer, J.M., González, B., Villanueva, J. (1995) Design of the Ciervana Breakwater. Bilbao. P.I.A.N.C., Londres, 1995.
Cooker, M. J. and Peregrine, D. H., (1990). A Model forBreaking Wave Impact Pressures. Proc. 22nd Int. Conference on Coastal Engineering. ASCE, Delft, Holanda, pp. 1473-1486
Fenton, J. D., (1985). Wave Forces on Vertical Walls. Journal of Waterway. Port. Coastal and Ocean División. ASCE. Vol. 111, No 4. pp. 693-717.
[+]
Burcharth, H. F., Frigaard, P., Uzeanga, J, Berenguer, J.M., González, B., Villanueva, J. (1995) Design of the Ciervana Breakwater. Bilbao. P.I.A.N.C., Londres, 1995.
Cooker, M. J. and Peregrine, D. H., (1990). A Model forBreaking Wave Impact Pressures. Proc. 22nd Int. Conference on Coastal Engineering. ASCE, Delft, Holanda, pp. 1473-1486
Fenton, J. D., (1985). Wave Forces on Vertical Walls. Journal of Waterway. Port. Coastal and Ocean División. ASCE. Vol. 111, No 4. pp. 693-717.
Goda, Y, (1985). Random seas and design of maritime structures. University of Tokio Press.
Goda, Y, (1994) Dynamic Response of Upríght Breakwaters to Impulsive Breaking Wave Forces. Coastal Engineering. Vol. 22, N° 1, pp 135-158
Günbak, A. R., Gokcc, T., (1984). Wave screen stability of rubble-mound break waters. International symposium of maritime structures in the Mediterranean sea. Atenas, Grecia, pp 99-1 12.
Hamilton, G.D., Hall, K.R., (1992). Preliminar? analisys of the stability of rubblemound breakwater crown walls. Proc. 23a' Int. Conference on Coastal Engineering. ASCE. Venecia. Italia, pp 1217-1230.
Hosoi, M, Shuto, N., (1964), Run-up height on a single slope dike due to waves coming obliquely. Coastal Engineering in Japan, Vol 7 pp 95-99.
Iribarren, R., Nogales, C., (1964). Obras marítimas. Ed. Dossat. Madrid.
Jensen, O., J., (1984) A monograph on Rubble Mound Breakwaters. Ed. Danish Hydraulic Institute.
Losada, M.A., Giménez-Curto L.A. (1981). Flow characteristics on rough, permeable slopes under wave action. Coastal Engineering. 4. pp 1 87-206.
Losada, M.A., Giménez-Curto L.A. (1982). Mound Breakwaters Under Obligue Wave Attack: A Working Hypothesis. Coastal Engineering. Vol. 6, N° 1, pp 83-92.
Losada, M. A., (1992) Recent developments in the design of mound breakwaters. Capítulo 21 del libro Handbook of Coastal and Pecan Engineering. John B. Herbich, Ed. pp 939-1050.
Losada, M. A., Martín, F. L., Medina, R. (1995) Wave Kinematics and Dynamics in Front of Reflective Stnictures. Capítulo del libro Wall Forces on Inclincd and Vertical Wall Structures, editado por el Task Committee.on Forces on Inclined and Vertical Wall Strutures, American Society of Civil Engineers (A.S.C.E.), pp 282-310.
Martín, F. L. (1995) Estudio Hidrodinámico de la Interacción de Ondas de Gravedad con Estructuras Reflejantes. Tesis Doctoral. Universidad de Cantabria.
Nagai, S., (1973). Wave Forces on Structures. Advances in Hydroscience. Vol 9. Ed. Academic Press.
Oumeraci, H., Kortenhaus, A. Analysis of the Dynamic Response of Caisson Breakwaters. Coastal Engineering. Vol. 22, N° 1, pp 159.183.
Pedersen, J., Burcharth, H. F., (1992). Wave forcé on crown watts. Proc. 23rd Int. Conference on Coastal Engineering ASCE, Venecia, Italia, pp. 1489-1502
Ramsden, J. D. and Raichlen, F., (1990). Forces on Vertical Wall Causea by Incident Bares. J. of Waterway. Port. Coastal and Ocean División. ASCE. Vol 116- 5. pp. 592-613.
Sainflou, G. (1928). Essal sur les diques maritimes verticales. Ann. Ponts Chaussees. 98 (4). pp 5-48.
Van der Meer, J.W., d'Angremond, K., Juhl, J. (1995). Pmbabilistic calculations of waveforces on vertic al Sructures. Publicación N° 487 de Delft Hvdraulics. pp 1- 14.
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