We present direct numerical simulations of breaking solitary waves in shallow water to quantify the energy dissipation during the active breaking time. We find that this dissipation can be predicted by an inertial model based on Taylor\u27s hypothesis as a function of the local wave height, depth and the beach slope. We obtain a relationship that gives the dissipation rate of a breaking wave on a shallow slope as a function of local breaking parameters. Next, we use empirical relations to relate the local wave parameters to the offshore conditions. This enables the energy dissipation to be predicted in terms of the initial conditions. We obtain good collapse of the numerical data with respect to the theoretical scaling
The run-up of non-breaking and breaking solitary waves on a uniform plane beach connected to a const...
An improved formulation to describe breaking wave energy dissipation is presented and incorporated i...
Based on the time dependent mild slope equation including the effect of wave energy dissipation, an ...
We present numerical results of energy dissipation in two-dimensional shallow water breaking waves. ...
A description is given of a model developed for the prediction of the dissipation of energy in rando...
A description is given of a model developed for the prediction of the dissipation of energy in rando...
The present wave transformation models for random waves make use of an explicit formulation of the e...
Based on the time-dependent mild slope equation including the effect of wave energy dissipation, an ...
International audienceThe modeling of wave breaking dissipation in coastal areas is investigated wit...
This study was undertaken to develop a simple energy dissipation model for computing the root mean s...
Shoaling and breaking of solitary waves is computed on slopes from 1:100 to 1:8 using an experimenta...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
The transformation of certain parameters of an incident random wave train across the surf zone has b...
A description is given of a model developed for the prediction of the dissipation of energy in rando...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
The run-up of non-breaking and breaking solitary waves on a uniform plane beach connected to a const...
An improved formulation to describe breaking wave energy dissipation is presented and incorporated i...
Based on the time dependent mild slope equation including the effect of wave energy dissipation, an ...
We present numerical results of energy dissipation in two-dimensional shallow water breaking waves. ...
A description is given of a model developed for the prediction of the dissipation of energy in rando...
A description is given of a model developed for the prediction of the dissipation of energy in rando...
The present wave transformation models for random waves make use of an explicit formulation of the e...
Based on the time-dependent mild slope equation including the effect of wave energy dissipation, an ...
International audienceThe modeling of wave breaking dissipation in coastal areas is investigated wit...
This study was undertaken to develop a simple energy dissipation model for computing the root mean s...
Shoaling and breaking of solitary waves is computed on slopes from 1:100 to 1:8 using an experimenta...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
The transformation of certain parameters of an incident random wave train across the surf zone has b...
A description is given of a model developed for the prediction of the dissipation of energy in rando...
Infragravity waves (20-200 s) receive their energy from sea-swell waves (2-20 s), and are thought to...
The run-up of non-breaking and breaking solitary waves on a uniform plane beach connected to a const...
An improved formulation to describe breaking wave energy dissipation is presented and incorporated i...
Based on the time dependent mild slope equation including the effect of wave energy dissipation, an ...