OVERTOPPING OF RUBBLE MOUND BREAKWATERS WITH FRONT RESERVOIR
Hans Falk Burcharth, Thomas Lykke Andersen
Abstract
Hans Falk Burcharth, Thomas Lykke Andersen
Abstract
The design and performance of breakwaters with front reservoir are discussed on the basis of physical 2-D model tests with a number of cross sections, in which vertopping discharge and spatial distribution, wave forces on inner parapet walls, and stability of reservoir armour were studied. The sensitivity of these quantities to the width of the reservoir is discussed. It is demonstrated that front reservoir solutions are more economical than conventional cross section solutions, such as bermed structures and mild slope structures, in cases where low crests and small overtopping discharges are demanded.
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The design and performance of breakwaters with front reservoir are discussed on the basis of physical 2-D model tests with a number of cross sections, in which vertopping discharge and spatial distribution, wave forces on inner parapet walls, and stability of reservoir armour were studied. The sensitivity of these quantities to the width of the reservoir is discussed. It is demonstrated that front reservoir solutions are more economical than conventional cross section solutions, such as bermed structures and mild slope structures, in cases where low crests and small overtopping discharges are demanded.
Key concepts: Rubble, Geology, Breakwater, Front (military), Geotechnical engineering, Oceanography