A new model for the boundary layer development and associated skin friction coefficients and shear stress within the swash zone is presented. The model is developed within a Lagrangian reference frame, following fluid trajectories, and can be applied to both laminar flow and smooth turbulent flow. The model is based on the momentum integral approach for steady, flat-plate boundary layers, with appropriate modifications to account for the unsteady flow regime and flow history. The model results are consistent with previous measurements of bed shear stress and skin friction coefficients within the swash zone. These indicate strong temporal and spatial variation throughout the swash cycle, and a clear distinction between the uprush and backwas...
A proto-type laboratory experiment examining swash dynamics on a coarse sandy beach was carried out...
This paper examines the numerical prediction of the sediment transport and bed evolution for a singl...
Funded by Mexican National Council of Science and Technology (CoNACyT) . Grant Number: 490080 Fulbri...
This paper presents a bottom boundary layer model for the unsteady and non-uniform flow in the swash...
This paper presents the results of a laboratory experiment of swash hydrodynamics on a coarse sand b...
The unsteady nature of coastal hydrodynamics is associated with complex boundary layer dynamics and ...
Direct measurements of bed shear in the swash zone are presented. The data were obtained using a she...
Understanding the boundary layer flow structure at the tip of a swash flow is important for improvin...
It is shown that the observed difference in sediment transporting efficiency by the swash uprush, co...
Extensive measurements of swash hydrodynamics and bed shear stress were obtained for surging, collap...
Bore-driven swash and swash interactions are investigated experimentally. Direct bed shear stress me...
Knowledge of the boundary shear stress in the swash zone is essential for the accurate prediction of...
We present a comprehensive and critical review of work on the numerical modelling of swash zone proc...
Swash flows are commonly modeled using the nonlinear shallow water equations (NSWEs). In the derivat...
A novel shear plate was used to make direct bed shear stress measurements in laboratory dam break an...
A proto-type laboratory experiment examining swash dynamics on a coarse sandy beach was carried out...
This paper examines the numerical prediction of the sediment transport and bed evolution for a singl...
Funded by Mexican National Council of Science and Technology (CoNACyT) . Grant Number: 490080 Fulbri...
This paper presents a bottom boundary layer model for the unsteady and non-uniform flow in the swash...
This paper presents the results of a laboratory experiment of swash hydrodynamics on a coarse sand b...
The unsteady nature of coastal hydrodynamics is associated with complex boundary layer dynamics and ...
Direct measurements of bed shear in the swash zone are presented. The data were obtained using a she...
Understanding the boundary layer flow structure at the tip of a swash flow is important for improvin...
It is shown that the observed difference in sediment transporting efficiency by the swash uprush, co...
Extensive measurements of swash hydrodynamics and bed shear stress were obtained for surging, collap...
Bore-driven swash and swash interactions are investigated experimentally. Direct bed shear stress me...
Knowledge of the boundary shear stress in the swash zone is essential for the accurate prediction of...
We present a comprehensive and critical review of work on the numerical modelling of swash zone proc...
Swash flows are commonly modeled using the nonlinear shallow water equations (NSWEs). In the derivat...
A novel shear plate was used to make direct bed shear stress measurements in laboratory dam break an...
A proto-type laboratory experiment examining swash dynamics on a coarse sandy beach was carried out...
This paper examines the numerical prediction of the sediment transport and bed evolution for a singl...
Funded by Mexican National Council of Science and Technology (CoNACyT) . Grant Number: 490080 Fulbri...