The flow within an oscillatory boundary layer, which approximates the flow generated by propagating sea waves of small amplitude close to the bottom, is simulated numerically by integrating the Navier-Stokes and continuity equations. The bottom is made up of spherical particles, free to move, which mimic sediment grains. The approach allows one to fully resolve the flow around the particles and to evaluate the forces and torques that the fluid exerts on their surface. Then, the dynamics of sediments is explicitly computed by means of the Newton-Euler equations. For the smallest value of the flow Reynolds number presently simulated, the flow regime turns out to fall in the intermittently turbulent regime such that turbulence appears when the...
A simulation of the turbulent flow and sediment dynamics in the boundary layer originated close to t...
Two manuscripts are presented which develop a numerical method for studying boundary layer flow and ...
Wave-induced boundary layer (BL) flows over sandy rippled bottoms are studied using a numerical mode...
The dynamics of sediment grains picked-up from the seabed and dragged by the oscillatory flow induce...
Lack of accurate criteria for onset of incipient motion and sediment pickup function remain two of t...
The results of a direct numerical simulation of oscillatory flow over a wavy bottom composed of diff...
The results of Direct Numerical Simulations of the oscillatory flow over a cohesionless bed of spher...
Hsu, Tian-JianStudying coastal processes is essential for the sustainability of human habitat and vi...
Graduation date: 2014Predominant models for predicting rates of sediment transport face acute shortc...
Sea ripples are small-scale bedforms which originate from the interaction of an oscillatory flow wit...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
Characterizing the interaction of mobile sediments with a turbulent boundary layer driven by waves a...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
The oscillatory flow around a spherical object lying on a rough bottom is investigated by means of d...
AbstractCharacterizing the interaction of mobile sediments with a turbulent boundary layer driven by...
A simulation of the turbulent flow and sediment dynamics in the boundary layer originated close to t...
Two manuscripts are presented which develop a numerical method for studying boundary layer flow and ...
Wave-induced boundary layer (BL) flows over sandy rippled bottoms are studied using a numerical mode...
The dynamics of sediment grains picked-up from the seabed and dragged by the oscillatory flow induce...
Lack of accurate criteria for onset of incipient motion and sediment pickup function remain two of t...
The results of a direct numerical simulation of oscillatory flow over a wavy bottom composed of diff...
The results of Direct Numerical Simulations of the oscillatory flow over a cohesionless bed of spher...
Hsu, Tian-JianStudying coastal processes is essential for the sustainability of human habitat and vi...
Graduation date: 2014Predominant models for predicting rates of sediment transport face acute shortc...
Sea ripples are small-scale bedforms which originate from the interaction of an oscillatory flow wit...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
Characterizing the interaction of mobile sediments with a turbulent boundary layer driven by waves a...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
The oscillatory flow around a spherical object lying on a rough bottom is investigated by means of d...
AbstractCharacterizing the interaction of mobile sediments with a turbulent boundary layer driven by...
A simulation of the turbulent flow and sediment dynamics in the boundary layer originated close to t...
Two manuscripts are presented which develop a numerical method for studying boundary layer flow and ...
Wave-induced boundary layer (BL) flows over sandy rippled bottoms are studied using a numerical mode...