In the past few years, two-phase models have been developed to describe the detail behaviour of fluid/sediment interactions and transport under the sheet flow conditions. Due to the complexity of the governing equations and uncertainties in the formulations of various stress terms, few complete solutions of these equations are known and the validations are thus far limited to only a few experimental data. In this paper, the numerical predictions of the behaviour of sheet flows using an improved version of an earlier two-phase flow model [Coastal Eng. 36(2) (1999) 87] are described. Although the general structure of the model was retained, a number of improvements had been made to give better account the underlying physics of the flow in are...
[1] A two-phase model is implemented to study the effects of wave shape on the transport of coarse-g...
Sheet flow corresponds to the high velocity regime when small bed ripples are washed out and sand is...
Sediment transport models require appropriate representation of near-bed processes. We aim here to e...
In the past few years, two-phase models have been developed to describe the detail behaviour of flui...
This paper presents a two-phase flow model that simulates the fluid and sediment motions in the shee...
A numerical model for the general description of the sediment transport under oscillatory sheet flow...
In this paper, a two-phase flow model is presented which simulates the fluid and sediment motions in...
To predict sediment transport under oscillatory sheet flow condition, especially for fine sand, is s...
The overall objective is to develop and test with laboratory and field observations a model that pre...
The inception of the sheet flow regime as well as the effects of the phase lag when the sheet flow r...
Sand transport beneath large waves occurs in the plane-bed, sheet-flow regime. Comparisons between t...
AbstractA number of turbulence closure schemes can be employed to numerically investigate near-bed w...
A number of turbulence closure schemes can be employed to numerically investigate near-bed wave boun...
Most models of sediment transport are based on the hypothesis of a weak interaction between the flui...
We study erosion depth and sediment fluxes for wave-induced sheet-flow, and their dependency on grai...
[1] A two-phase model is implemented to study the effects of wave shape on the transport of coarse-g...
Sheet flow corresponds to the high velocity regime when small bed ripples are washed out and sand is...
Sediment transport models require appropriate representation of near-bed processes. We aim here to e...
In the past few years, two-phase models have been developed to describe the detail behaviour of flui...
This paper presents a two-phase flow model that simulates the fluid and sediment motions in the shee...
A numerical model for the general description of the sediment transport under oscillatory sheet flow...
In this paper, a two-phase flow model is presented which simulates the fluid and sediment motions in...
To predict sediment transport under oscillatory sheet flow condition, especially for fine sand, is s...
The overall objective is to develop and test with laboratory and field observations a model that pre...
The inception of the sheet flow regime as well as the effects of the phase lag when the sheet flow r...
Sand transport beneath large waves occurs in the plane-bed, sheet-flow regime. Comparisons between t...
AbstractA number of turbulence closure schemes can be employed to numerically investigate near-bed w...
A number of turbulence closure schemes can be employed to numerically investigate near-bed wave boun...
Most models of sediment transport are based on the hypothesis of a weak interaction between the flui...
We study erosion depth and sediment fluxes for wave-induced sheet-flow, and their dependency on grai...
[1] A two-phase model is implemented to study the effects of wave shape on the transport of coarse-g...
Sheet flow corresponds to the high velocity regime when small bed ripples are washed out and sand is...
Sediment transport models require appropriate representation of near-bed processes. We aim here to e...