Recent advances in stability formulae and damage description of breakwater armour layer

Kamali, Babak and Hashim, Roslan (2009) Recent advances in stability formulae and damage description of breakwater armour layer. Australian Journal of Basic and Applied Sciences, 3 (3). pp. 2817-2827. ISSN 1991-8178,

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Abstract

The present paper gives a brief overview of the current state-of-the-art for estimating stability of rubble mound breakwater armour layer, identifying a set of relevant aspects, such as definition of damage, type of armour units, and the sea state. Since all the stability formulae are designed to estimate the appropriate weight of armour units corresponding to a certain damage level, different methods of damage assessment are distinguished, and most well-known stability formulae are discussed with the emphasis on definition of damage.

Item Type: Article
Funders: UNSPECIFIED
Additional Information: Export Date: 16 December 2013 Source: Scopus Language of Original Document: English Correspondence Address: Kamali, B.; Institute of Ocean and Earth Sciences, University of Malaya, 50603 Kuala Lumpur, Malaysia; email: bkamali@perdana.um.edu.my References: Ahrens, J.P., (1975) Large Wave Tank Tests of Riprap Stability, p. 51. , CERC, Technical memorandum, No; Ahrens, J.P., Reef type breakwaters (1984) Proceedings of The 19th ICCE, 3, pp. 2648-2662. , Houston, USA; Battjes, J.A., Surf Similarity (1974) Proceedings of the 14th ICCE Copenhagen, pp. 466-448; Broderick, L.L., Riprap stability, a progress report. Proceedings of the Coastal Structures'83 (1983) ASCE, pp. 320-333; Burcharth, H.F., Introduction of partial coefficients in the design of rubble mound breakwaters (1991) Proceedings of The Coastal Structures and Breakwaters Conf, pp. 543-566. , Institution of Civil Engineers (Great Britain), London, pp; Burcharth, H.F., Kramer, M., Lamberti, A., Zanuttigh, B., Structural stability of detached low crested breakwaters (2006) Coastal Engineering, 53 (4), pp. 381-394; Engineer Manual 1110-2-1100 (2006) U.S. Government Printing Office, 6. , Coastal Engineering Manual (CEM), U.S. Army Engineer Waterways Experiment Station, Washington, DC., (in, volumes; (2009) Delta Marine Consultants B.v, , www.xbloc.com, DMC, (accessed May; Givler, L.D., Sørensen, R.M., (1986) An Investigation of The Stability of Submerged Homogeneous Rubble Mound Structures Under Wave Attack, , H.R. IMBT Hydraulics, Lehigh University, Philadelphia, PA. IHL-110-86; Hedar, P.A., Stability of rock-fill breakwaters (1960) Doctoral Thesis, , University of Goteborg, Sweden; Holtzhausen, A.H., Zwamborn, J.A., New stability formula for dolosse (1992) Proceedings of The 23rd ICCE, 1, pp. 1231-1244. , Venice, ASCE; Hudson, R.Y., Laboratory investigation of rubble-mound breakwaters (1959) Journal of The Waterways and Harbors Division, ASCE, 85, pp. 93-121; Iribarren, R.C., (1938) A Formula For the Calculation of Rock-fill Dikes. Trans Lated By D. Heinrich, 1948. Technical Report HE-116-295, Univ, , of Calif., Berkeley, CA, USA. Revista de Obras Publicas, M adrid, Spain; Koev, K.N., Statis tical analysis of formulas for breakwater armor layer design (1992) Journal of Waterway Port Coastal and Ocean Engineering, ASCE, 118 (2), pp. 213-219; Losada, M.A., Desire, J.M., Alejo, L.M., Stability of blocks as breakwater armor units (1986) Journal of Structure Eng., ASCE, 112 (11), pp. 2392-2401; Melby, J.A., Damage Progression on Rubble-Mound Breakwaters (1999) U.S. Army Corps of Engineers Waterways Experiment Station, , Vicksburg, MS., Technical Report CHL-99-17;
Uncontrolled Keywords: Armour layer; Breakwater; Damage description; Stability formulae
Subjects: T Technology > TA Engineering (General). Civil engineering (General)
Divisions: Faculty of Engineering
Depositing User: Mr Jenal S
Date Deposited: 26 Mar 2014 02:05
Last Modified: 14 Nov 2019 01:48
URI: http://eprints.um.edu.my/id/eprint/8839

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