The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the coastline is determined in the region seaward of the breaker line. Shallow waters and waves of small amplitude are considered. Moreover, the Reynolds number is assumed to be large but still within the laminar regime and the flow domain is split into a bottom boundary layer and a core region. For an incoming wave which is fully absorbed at the coast the solution shows that close to the bottom the steady streaming is onshore directed even though the depth-averaged value represents an offshore directed flow. Moreover, the vertical velocity distribution depends on the ratio between the wave amplitude a∗ and the thickness δ∗ of the bottom b...
In this paper we examine a simple model of sediment transport, induced by the breaking waves in the ...
Final report on research work done under Contract DACW 72-68-C-0012 with the Coastal Engineering Cen...
Transformation of waves on sandy beaches, their breaking, set-up and run-up are the main factors ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the c...
A numerical model aimed at computing the mean velocity generated by a sea wave propagating over a sl...
The flow and sediment transport in the boundary layer at the sea bottom due to the passage of surfac...
The flow and sediment transport in the boundary layer at the sea bottom due to the passage of surfac...
The steady streaming generated by nonlinear effects at the bottom of a propagating surface wave is d...
The flow in the wall boundary layer generated close to the sea bottom by the propagation of a monoch...
Mass transport under a progressive sea wave propagating over a rippled bed is investigated. Wave amp...
Breaking waves of spilling-type are generated on a mild slope under the condition that the mass tran...
Breaking waves of spilling-type are generated on a mild slope under the condition that the mass tran...
In this paper we examine a simple model of sediment transport, induced by the breaking waves in the ...
Final report on research work done under Contract DACW 72-68-C-0012 with the Coastal Engineering Cen...
Transformation of waves on sandy beaches, their breaking, set-up and run-up are the main factors ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the ...
The steady streaming induced by a sea wave shoaling on a sloping beach and partly reflected at the c...
A numerical model aimed at computing the mean velocity generated by a sea wave propagating over a sl...
The flow and sediment transport in the boundary layer at the sea bottom due to the passage of surfac...
The flow and sediment transport in the boundary layer at the sea bottom due to the passage of surfac...
The steady streaming generated by nonlinear effects at the bottom of a propagating surface wave is d...
The flow in the wall boundary layer generated close to the sea bottom by the propagation of a monoch...
Mass transport under a progressive sea wave propagating over a rippled bed is investigated. Wave amp...
Breaking waves of spilling-type are generated on a mild slope under the condition that the mass tran...
Breaking waves of spilling-type are generated on a mild slope under the condition that the mass tran...
In this paper we examine a simple model of sediment transport, induced by the breaking waves in the ...
Final report on research work done under Contract DACW 72-68-C-0012 with the Coastal Engineering Cen...
Transformation of waves on sandy beaches, their breaking, set-up and run-up are the main factors ...