In this study, a coupled model is proposed to investigate dynamic response of a porous seabed and an offshore pile to ocean wave loadings. Both the offshore pile and the porous seabed are treated as a saturated poro-elastic medium, while the seawater is considered as a conventional acoustic medium. The coupled boundary element model is established by the continuity conditions along the interfaces between the three media. In the system, wave force is considered as an external load and it is evaluated via the wave function expansion method in the context of a linear wave theory. Numerical results show that the increase of the modulus ratio between the pile and the seabed can reduce the horizontal displacement of the pile and the pore pressure...
In this paper, a numerical model is developed to study the dynamic response of a porous seabed to co...
Wave-induced seabed instability caused by the residual liquefaction of seabed may threaten the safet...
The action of water waves moving over a porous seabed drives a seepage flux into and out of the mari...
In this study, a coupled model is proposed to investigate dynamic response of a porous seabed and an...
A coupled model is developed to investigate the dynamic interaction between an offshore pile, a poro...
The evaluation of the seabed response, including pore pressure, effective stresses and shear stresse...
The stability and deformation of a seabed during ocean wave represents an important environmental fa...
The interaction between wave and offshore deposits is of great importance for the foundation design ...
A mathematical model which describes the dynamic response of a laterally loaded offshore pile was de...
AbstractThe wave–seabed interaction issue is of great importance for the design of foundation around...
In this study, an integrated model (PORO-WSSI II) for wave-seabed-structure interactions (WSSI) is d...
The wave–seabed interaction issue is of great importance for the design of foundation around marine ...
In this study a u-p approximation for the Dynamic response in a porous seabed of finite depth to com...
In real ocean environments, currents generally exist simultaneously with ocean waves. However, the m...
The pile foundation of offshore wind turbines is not only subjected to the cyclic action of wave loa...
In this paper, a numerical model is developed to study the dynamic response of a porous seabed to co...
Wave-induced seabed instability caused by the residual liquefaction of seabed may threaten the safet...
The action of water waves moving over a porous seabed drives a seepage flux into and out of the mari...
In this study, a coupled model is proposed to investigate dynamic response of a porous seabed and an...
A coupled model is developed to investigate the dynamic interaction between an offshore pile, a poro...
The evaluation of the seabed response, including pore pressure, effective stresses and shear stresse...
The stability and deformation of a seabed during ocean wave represents an important environmental fa...
The interaction between wave and offshore deposits is of great importance for the foundation design ...
A mathematical model which describes the dynamic response of a laterally loaded offshore pile was de...
AbstractThe wave–seabed interaction issue is of great importance for the design of foundation around...
In this study, an integrated model (PORO-WSSI II) for wave-seabed-structure interactions (WSSI) is d...
The wave–seabed interaction issue is of great importance for the design of foundation around marine ...
In this study a u-p approximation for the Dynamic response in a porous seabed of finite depth to com...
In real ocean environments, currents generally exist simultaneously with ocean waves. However, the m...
The pile foundation of offshore wind turbines is not only subjected to the cyclic action of wave loa...
In this paper, a numerical model is developed to study the dynamic response of a porous seabed to co...
Wave-induced seabed instability caused by the residual liquefaction of seabed may threaten the safet...
The action of water waves moving over a porous seabed drives a seepage flux into and out of the mari...