Media Summary: Slow motion sand particle splashing into sand bed in Trent University Wind Tunnel. Wind speed 7 m/s, sand d50= 300 um. The video shows transportation by constructive waves on Mappleton beach. The main process of transportation in this video is ... Recorded by GoPro at Oceano Dunes, June 2, 2015. Timelapse at (1 second = 10 minutes). Image width is about 3 m.

Saltation Simulation - Detailed Analysis & Overview

Slow motion sand particle splashing into sand bed in Trent University Wind Tunnel. Wind speed 7 m/s, sand d50= 300 um. The video shows transportation by constructive waves on Mappleton beach. The main process of transportation in this video is ... Recorded by GoPro at Oceano Dunes, June 2, 2015. Timelapse at (1 second = 10 minutes). Image width is about 3 m. Turbulent/Lift forces in DEM simulation of aeolian saltation See for more info. This shows the dune field The animation shows first model results of the AeoLiS model that simulates morphological change due to aeolian processes at the ...

Dunes form behind beaches along coastlines. They are mounds, hills or ridges of sand that build up above the high tide level of ... Sand bounces along the surface of of the streambed, which is part of a larger sand deposit that remained after the removal of the ... Shot on the beach during 'Aeolex II' field campaign, Egmond aan Zee.

Photo Gallery

Saltation simulation
Single particle saltation in a rough wall turbulent boundary layer
Slow motion saltation with mid air collision
Slow motion saltation
Saltating Sand Grains
DEM simulation of aeolian saltation
Saltation
Saltation transport
Saltation and ripple migration timelapse
Turbulent/Lift forces in DEM simulation of aeolian saltation
Dune field simulation, moderate sand supply (h = 10)
10 year simulation of aeolian sediment transport at the Sand Motor using AeoLiS
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