Silty sand is a kind of typical marine sediment that is widely distributed in the offshore areas of East China. It has been found that under continuous actions of wave pressure, a mass of fine particles will gradually rise up to the surface of silty sand seabeds, i.e., the phenomenon called wave-induced soil erosion. This is thought to be due to the seepage flow caused by the pore-pressure accumulation within the seabed. In this paper, a kind of three-phase soil model (soil skeleton, pore fluid, and fluidized soil particles) is established to simulate the process of wave-induced soil erosion. In the simulations, the analytical solution for wave-induced pore-pressure accumulation was used, and Darcy flow law, mass conservation, and generatio...
The residual mechanism of wave-induced pore water pressure accumulation in marine sediments is re-ex...
Instantaneous liquefaction can be induced by the upward seepage force generated in a sandy seabed un...
In this study, an analytic solution of wave interaction with a rigid porous medium above a poro-elas...
With the increasing of extreme weather events, more attention has been drawn to the protection of co...
Coastal structures are always facing the threat of damage caused by different wave actions. A better...
NoIt is important to consider the potential instability of the seabed due to the accumulation of wav...
The action of water waves moving over a porous seabed drives a seepage flux into and out of the mari...
Most existing studies do not consider the effect that the deformability of submarine sediments may h...
YesIn this study, a new three-dimensional (3-D) model was developed to provide better understanding ...
In this study, an integrated numerical model FSSI-CAS 2D (previously known as POROWSSI 2D) is develo...
Progressive waves may break while propagating towards shallow waters. Previous investigations on wav...
Sediments with poor drainage conditions are prone to build-up of excess pore water pressure when exp...
Some marine structures have been reported to be damaged by seabed instability. It has been well docu...
In this study, an analytic solution of wave interaction with a rigid porous medium above a poro-elas...
This study is aimed at numerically investigating the cnoidal wave-induced dynamics characteristics a...
The residual mechanism of wave-induced pore water pressure accumulation in marine sediments is re-ex...
Instantaneous liquefaction can be induced by the upward seepage force generated in a sandy seabed un...
In this study, an analytic solution of wave interaction with a rigid porous medium above a poro-elas...
With the increasing of extreme weather events, more attention has been drawn to the protection of co...
Coastal structures are always facing the threat of damage caused by different wave actions. A better...
NoIt is important to consider the potential instability of the seabed due to the accumulation of wav...
The action of water waves moving over a porous seabed drives a seepage flux into and out of the mari...
Most existing studies do not consider the effect that the deformability of submarine sediments may h...
YesIn this study, a new three-dimensional (3-D) model was developed to provide better understanding ...
In this study, an integrated numerical model FSSI-CAS 2D (previously known as POROWSSI 2D) is develo...
Progressive waves may break while propagating towards shallow waters. Previous investigations on wav...
Sediments with poor drainage conditions are prone to build-up of excess pore water pressure when exp...
Some marine structures have been reported to be damaged by seabed instability. It has been well docu...
In this study, an analytic solution of wave interaction with a rigid porous medium above a poro-elas...
This study is aimed at numerically investigating the cnoidal wave-induced dynamics characteristics a...
The residual mechanism of wave-induced pore water pressure accumulation in marine sediments is re-ex...
Instantaneous liquefaction can be induced by the upward seepage force generated in a sandy seabed un...
In this study, an analytic solution of wave interaction with a rigid porous medium above a poro-elas...