Abstract. Sea and swell wave heights observed on transects crossing the mid and inner surf zone on three beaches (a steep concave-up beach, a gently sloped approximately planar beach, and a beach with an approximately fiat terrace adjacent to a steep foreshore) were depth limited (i.e., approximately independent of the offshore wave height), consistent with previous observations. The wave evolution is well predicted by a numerical model based on the one-dimensional nonlinear shallow water equations with bore dissipation. The model is initialized with the time series of sea surface elevation and cross-shore current observed at the most offshore sensors (located about 50 to 120 m from the mean shoreline in mean water depths 0.80 to 2.10 m). T...
Recent field studies over low sloping beaches have shown that infragravity waves could dissipate a s...
Abstract. Field observations and numerical model predictions are used to investigate the effects of ...
A similarity parameter is derived to describe surf zone dissipation using the classical energy dissi...
The dissipation of the sea-swell frequency band energy (nominally 0.09 < f less than or equal to 0.3...
Field data of waves in the surfzone and runup on ocean beaches in extreme conditions are rare; empir...
Abstract. Waves observed in the inner surf and swash zones of a fine grained, gently sloping beach a...
Field observations of swash and ocean waves show that runup saturation at infragravity frequencies (...
A fully nonlinear non-dispersive energy balance for surfzone waves is derived based on the nonlinear...
The hydrodynamics of surf and swash on natural beaches are presented. Wave height evolution in the s...
Ocean surface infragravity waves (periods from 20 to 200 s) observed along the south-ern California ...
The dissipation of the sea-swell frequency band energy (nominally 0.09 < f ≤ 0.3 Hz) and the dist...
The dissipation and distribution of wave energy was investigated on a transect crossing the surf zon...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
The accuracy of predicting wave transformation in the nearshore is very important to wave hydrodynam...
Recent field studies over low sloping beaches have shown that infragravity waves could dissipate a s...
Abstract. Field observations and numerical model predictions are used to investigate the effects of ...
A similarity parameter is derived to describe surf zone dissipation using the classical energy dissi...
The dissipation of the sea-swell frequency band energy (nominally 0.09 < f less than or equal to 0.3...
Field data of waves in the surfzone and runup on ocean beaches in extreme conditions are rare; empir...
Abstract. Waves observed in the inner surf and swash zones of a fine grained, gently sloping beach a...
Field observations of swash and ocean waves show that runup saturation at infragravity frequencies (...
A fully nonlinear non-dispersive energy balance for surfzone waves is derived based on the nonlinear...
The hydrodynamics of surf and swash on natural beaches are presented. Wave height evolution in the s...
Ocean surface infragravity waves (periods from 20 to 200 s) observed along the south-ern California ...
The dissipation of the sea-swell frequency band energy (nominally 0.09 < f ≤ 0.3 Hz) and the dist...
The dissipation and distribution of wave energy was investigated on a transect crossing the surf zon...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
The accuracy of predicting wave transformation in the nearshore is very important to wave hydrodynam...
Recent field studies over low sloping beaches have shown that infragravity waves could dissipate a s...
Abstract. Field observations and numerical model predictions are used to investigate the effects of ...
A similarity parameter is derived to describe surf zone dissipation using the classical energy dissi...