Characterizing the interaction of mobile sediments with a turbulent boundary layer driven by waves and currents represents an important scientific and engineering challenge. To approach this, Balachandar’s scaling relations for particle Reynolds number and Stokes number (IJMF, vol. 35, pg 801–110, 2009) are recast in terms of Shields parameter and particle Galileo number. This allows for the modified Shields diagram to be partitioned into at least five regimes, where distinct primary mechanisms of sediment-turbulence interaction are identified. Practical guidelines are provided for selecting an appropriate direct or large-eddy simulation approach in the Shields-Galileo phase space
We investigate the ejection of sediments from the near-bed region of a pulsating boundary layer over...
This paper presents details of hydrodynamics, turbulence characteristics, sediment concentrations an...
Compte tenu de l'importance du transport de sable dans des conditions d'écoulement intense sur l'évo...
AbstractCharacterizing the interaction of mobile sediments with a turbulent boundary layer driven by...
The flow within an oscillatory boundary layer, which approximates the flow generated by propagating ...
Sediment transport due to fluid motion is a crucial process in many environmental and engineered sys...
Effects of large-scale topographic features on the benthic boundary layer (BBL) flow characteristics...
Currently used 3D numerical sediment transport models still fail to make good quantitative predictio...
The dynamics of sediment grains picked-up from the seabed and dragged by the oscillatory flow induce...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
Hsu, Tian-JianStudying coastal processes is essential for the sustainability of human habitat and vi...
Lack of accurate criteria for onset of incipient motion and sediment pickup function remain two of t...
The protection of coastal areas from erosion is an issue of great importance, not only for the hinte...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
The inability to capture the physics of solid-particle suspension in turbulent fluids in simple form...
We investigate the ejection of sediments from the near-bed region of a pulsating boundary layer over...
This paper presents details of hydrodynamics, turbulence characteristics, sediment concentrations an...
Compte tenu de l'importance du transport de sable dans des conditions d'écoulement intense sur l'évo...
AbstractCharacterizing the interaction of mobile sediments with a turbulent boundary layer driven by...
The flow within an oscillatory boundary layer, which approximates the flow generated by propagating ...
Sediment transport due to fluid motion is a crucial process in many environmental and engineered sys...
Effects of large-scale topographic features on the benthic boundary layer (BBL) flow characteristics...
Currently used 3D numerical sediment transport models still fail to make good quantitative predictio...
The dynamics of sediment grains picked-up from the seabed and dragged by the oscillatory flow induce...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
Hsu, Tian-JianStudying coastal processes is essential for the sustainability of human habitat and vi...
Lack of accurate criteria for onset of incipient motion and sediment pickup function remain two of t...
The protection of coastal areas from erosion is an issue of great importance, not only for the hinte...
To develop a robust multi-phase, multi-class numerical modeling framework for both cohesive and non-...
The inability to capture the physics of solid-particle suspension in turbulent fluids in simple form...
We investigate the ejection of sediments from the near-bed region of a pulsating boundary layer over...
This paper presents details of hydrodynamics, turbulence characteristics, sediment concentrations an...
Compte tenu de l'importance du transport de sable dans des conditions d'écoulement intense sur l'évo...