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Journal of Coastal Research, ISSN 0749-0208, 1/2018, Volume 85, Issue 85, pp. 1116 - 1120
Journal Article
Coastal Engineering, ISSN 0378-3839, 07/2013, Volume 77, pp. 151 - 166
Rubble mound breakwaters armoured with concrete units rely on collective behaviour between adjacent concrete armour units but existing largely empirical... 
Concrete armour unit | Contact force | Packing density | FEMDEM | Core-Loc | Numerical model | ENGINEERING, CIVIL | ENGINEERING, OCEAN | Core-Loc (TM) | DOLOSSE | DEM | Concretes | Armour | Breakwalls | Armor | Mathematical models | Acceptability | Breakwaters
Journal Article
Computers and Structures, ISSN 0045-7949, 01/2015, Volume 146, pp. 117 - 142
•Explicit transient dynamic model for 3D multi-body interaction with fracturing.•Modelling of fracturing observed in concrete armour unit drop and pendulum... 
Combined finite-discrete element method | Numerical simulation | Concrete armor unit | Fracture model | Core-Loc | Dolos | TESTS | DYNAMIC-RESPONSE | STRESSES | COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS | ENGINEERING, CIVIL | IMPACT LOADS | DOLOSSE | Reserves | Concretes | Fracture mechanics | Armour | Computer simulation | Armor | Mathematical models | Three dimensional models | Loads (forces)
Journal Article
China Ocean Engineering, ISSN 0890-5487, 12/2017, Volume 31, Issue 6, pp. 747 - 753
Tetrapod, one of the well-known artificial concrete units, is frequently used as an armor unit on breakwaters. Two layers of tetrapod units are normmaly placed... 
breakwaters | placement methods | irregular waves | stability | tetrapod unit | ENGINEERING, CIVIL | ENGINEERING, OCEAN | WATER RESOURCES | ENGINEERING, MECHANICAL | Wave parameters | Stability | Methodology | Placement | Armor | Regular waves | Irregular waves | Concrete | Damage | Coefficients | Waves | Breakwaters
Journal Article
Journal of Waterway, Port, Coastal, and Ocean Engineering, ISSN 0733-950X, 01/2014, Volume 140, Issue 1, pp. 100 - 108
AbstractThis paper describes the heterogeneous packing (HEP) failure mode of breakwater armor. HEP reduces packing density in the armor layer near and above... 
Technical Papers | Laboratory tests | Concrete blocks | Stability | Damage | Armor units | Breakwaters | ENGINEERING, CIVIL | ENGINEERING, OCEAN | WATER RESOURCES | MOUND BREAKWATERS | Hydrofoil boats | Mechanical properties | Hydrodynamics | Research | Stress analysis (Engineering) | Methods | Fluid dynamics | Hydraulics | Armor | Fluid flow | Cubes | Packing density
Journal Article
Journal of Waterway, Port, Coastal, and Ocean Engineering, ISSN 0733-950X, 03/2011, Volume 137, Issue 2, pp. 54 - 63
In this paper, an experimental methodology is described to assess the structural strength of unreinforced concrete armor units (CAUs). The methodology is... 
TECHNICAL PAPERS | Armor unit | Cubipod | Concrete block | Prototype test | Drop test | Breakwaters | ENGINEERING, CIVIL | ENGINEERING, OCEAN | WATER RESOURCES | DOLOSSE | Analysis | Cavalry | Reinforced concrete | Testing | Concretes | Methodology | Drop tests | Armor | Prototypes | Materials handling | Cubes | Impact tests
Journal Article
Journal of Coastal Research, ISSN 0749-0208, 5/2019, Volume 35, Issue 3, pp. 719 - 728
Journal Article
Applied Mechanics and Materials, ISSN 1660-9336, 08/2014, Volume 606, Issue Materials, Industrial and Manufacturing Engineering Research Advances 1.2, pp. 211 - 215
Continuous research is conducted to improve the available coastal protection scheme, including to develop an innovative concrete armor unit with interlocking... 
Interlocking armor unit | Concrete armor unit | Coastal protection structure | Damage level | Hydraulic stability | Concretes | Progressions | Damage assessment | Stability | Armor | Weight reduction | Damage | Locking
Journal Article
Coastal Engineering Journal, ISSN 2166-4250, 12/2017, Volume 59, Issue 4, pp. 1750020-1 - 1750020-33
Single layer concrete armor systems are being widely used nowadays in the design of rubble mound breakwaters. Recently, a new concrete armor unit has been... 
Crablock | wave overtopping | placement pattern | single layer armor | stability | ENGINEERING, CIVIL | ENGINEERING, OCEAN | Significant waves | Rubblemound breakwaters | Wave height | Model testing | Stability | Research | Packing density | Tests | Foreshore | Breakwaters | Concretes | Design | Placement | Armor | Flumes | Concrete | Experimental research | Overtopping
Journal Article
Proceedings of the Institution of Civil Engineers: Maritime Engineering, ISSN 1741-7597, 09/2016, Volume 169, Issue 3, pp. 115 - 123
The 1993 Clacton Coastal Defence Works included a 1.4 km length of sloping revetment formed of precast concrete armour units. The revetment was designed for a... 
Materials technology | Concrete structures | Maritime engineering | WATER RESOURCES | ENGINEERING, CIVIL | ENGINEERING, OCEAN | maritime engineering | materials technology | concrete structures
Journal Article
Journal of Coastal Research, ISSN 0749-0208, 1/2018, Volume 85, Issue 85, pp. 1166 - 1170
Journal Article
Applied Mechanics and Materials, ISSN 1660-9336, 06/2014, Volume 567, Issue Structural, Environmental, Coastal and Offshore Engineering, pp. 313 - 318
Wave transmission is one of the components resulted from interaction between incident wave and coastal structure. Factors influencing wave transmission include... 
ICU-V | Wave transmission | Concrete armor unit | Crest height | Crest width | Concretes | Wave attenuation | Coastal areas | Dissipation | Incident waves | Mathematical models | Freeboard | Locking
Journal Article
Ain Shams Engineering Journal, ISSN 2090-4479, 09/2014, Volume 5, Issue 3, pp. 681 - 689
This research aimed to investigate the armor layer stability of the new breakwater of El Dikheila Port. An undistorted physical hydraulic model with a scale of... 
Physical modeling | Armor layer stability | Concrete cubes | Coastal structures | Breakwaters
Journal Article
Australasian Coasts and Ports 2017 Conference, 2017, pp. 629 - 632
Conference Proceeding
Proceedings of the International Offshore and Polar Engineering Conference, ISSN 1098-6189, 2015, Volume 2015-, pp. 1390 - 1393
Conference Proceeding
Conference Proceeding
Concrete International, ISSN 0162-4075, 10/2009, p. 34
R (1) where αc = the coefficient of thermal expansion in units of strain per degree temperature change; Δεa = the incremental strain resulting from autogenous... 
Studies | Sensitivity analysis | Concrete curing | Alternative energy sources | Tension tests | Fracture zones | Tensile strength | Residual stress | Environmental conditions
Journal Article
2013 IEEE Business Engineering and Industrial Applications Colloquium (BEIAC), 04/2013, pp. 673 - 678
Various local innovative armor units for coastal protection structure have been developed to mitigate and control serious coastal erosion problems. The armor... 
Technological innovation | West Coast of Malaysia | Surge protection | Materials | performance evaluation | Slabs | Surges | Periodic structures | coastal protection | concrete armor unit
Conference Proceeding
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