Field observations often show a considerable variation in mean grain size along the coastal profile. Under high waves in shallow water, bed ripples are washed out, and sheet flow becomes the dominant transport mode: large amounts of sand are transported in a thin layer close to the bed, i.e., the sheet flow layer. This paper focuses on grain size influences on transport processes in oscillatory sheet flow. Experiments were carried out in the Large Oscillating Water Tunnel (LOWT) of Delft Hydraulics, in which near-bed orbital velocities in combination with a net current can be simulated at full scale. Three uniform sands with different mean grain size were used. It was found that in contradiction to expressions found in literature, both the ...
Near-bed oscillatory flows with acceleration skewness are characteristic of steep and breaking waves...
For the first time, detailed measurements of sediment concentrations and grain velocities inside the...
Experimental results are very important to understand the complex nature of sand transport. They giv...
New experiments were carried out in the Large Oscillating Water Tunnel of WL|Delft Hydraulics (scale...
Especially during storms the coast-profile can change dramatically. During storms large waves cause ...
Sand transport beneath large waves occurs in the plane-bed, sheet-flow regime. Comparisons between t...
New experiments with graded sand were conducted in the large oscillating tunnel of Delft Hydraulics....
We study erosion depth and sediment fluxes for wave-induced sheet-flow, and their dependency on grai...
This study consists of three sections: - experiments on sand transport in oscillatory sheet flow wit...
The main goals of this study are to obtain more insight and quantitative data of the selective trans...
Sheet flow corresponds to the high velocity regime when small bed ripples are washed out and sand is...
It is often assumed that in sheet flow conditions the transport rate in oscillatory flow behaves qua...
The morphology of coastal areas is constantly changing under the influence of sediments being transp...
In the near-shore zone, energetic sea waves generate sheet-flow sand transport. In present day coast...
A new series of laboratory experiments was performed in the Aberdeen Oscillatory Flow Tunnel (AOFT) ...
Near-bed oscillatory flows with acceleration skewness are characteristic of steep and breaking waves...
For the first time, detailed measurements of sediment concentrations and grain velocities inside the...
Experimental results are very important to understand the complex nature of sand transport. They giv...
New experiments were carried out in the Large Oscillating Water Tunnel of WL|Delft Hydraulics (scale...
Especially during storms the coast-profile can change dramatically. During storms large waves cause ...
Sand transport beneath large waves occurs in the plane-bed, sheet-flow regime. Comparisons between t...
New experiments with graded sand were conducted in the large oscillating tunnel of Delft Hydraulics....
We study erosion depth and sediment fluxes for wave-induced sheet-flow, and their dependency on grai...
This study consists of three sections: - experiments on sand transport in oscillatory sheet flow wit...
The main goals of this study are to obtain more insight and quantitative data of the selective trans...
Sheet flow corresponds to the high velocity regime when small bed ripples are washed out and sand is...
It is often assumed that in sheet flow conditions the transport rate in oscillatory flow behaves qua...
The morphology of coastal areas is constantly changing under the influence of sediments being transp...
In the near-shore zone, energetic sea waves generate sheet-flow sand transport. In present day coast...
A new series of laboratory experiments was performed in the Aberdeen Oscillatory Flow Tunnel (AOFT) ...
Near-bed oscillatory flows with acceleration skewness are characteristic of steep and breaking waves...
For the first time, detailed measurements of sediment concentrations and grain velocities inside the...
Experimental results are very important to understand the complex nature of sand transport. They giv...