Here, we propose a conceptual framework of Aeolian sediment transport initiation that includes the role of turbulence. Upon increasing the wind shear stress τ above a threshold value τ t ′ , particles resting at the bed surface begin to rock in their pockets because the largest turbulent fluctuations of the instantaneous wind velocity above its mean value u ¯ induce fluid torques that exceed resisting torques. Upon a slight further increase of τ , rocking turns into a rolling regime (i.e., rolling threshold τ t ≃ τ t ′ ) provided that the ratio between the integral time scale T i ∝ δ / u ¯ (where δ is the boundary layer thicknes...
When air blows across the surface of dry, loose sand, a critical shear velocity must be achieved to ...
Coastal aeolian sediment transport is influenced by supply-limiting factors caused by sediment sorti...
Virtually all mechanistic predictions of landscape evolution are underpinned by predictions of sedim...
Here, we propose a conceptual framework of Aeolian sediment transport initiation that includes the r...
Here, we propose a conceptual framework of Aeolian sediment transport initiation that includes the r...
Predicting the morphodynamics of sedimentary landscapes due to fluvial and aeolian flows requires an...
PhDThe aeolian threshold condition is identified as defining the critical state between a static se...
Aeolian sand beds exhibit regular patterns of ripples resulting from the interaction between topogra...
Sand dunes and ripples result from the interaction between topography, hydrodynamics and sediment tr...
International audienceWe report on wind tunnel measurements on saltating particles in a turbulent bo...
International audienceWe report on wind tunnel measurements on saltating particles in a turbulent bo...
International audienceAeolian sand beds exhibit regular patterns of ripples resulting from the inter...
We hypothesize that large eddies play a major role in the entrainment of aeolian particles. To test ...
International audienceVia wind tunnel experiments on aeolian sand transport, we provide evidences th...
Aeolian transport is an important mechanism for the transport of sand on Earth and on Mars. Dust and...
When air blows across the surface of dry, loose sand, a critical shear velocity must be achieved to ...
Coastal aeolian sediment transport is influenced by supply-limiting factors caused by sediment sorti...
Virtually all mechanistic predictions of landscape evolution are underpinned by predictions of sedim...
Here, we propose a conceptual framework of Aeolian sediment transport initiation that includes the r...
Here, we propose a conceptual framework of Aeolian sediment transport initiation that includes the r...
Predicting the morphodynamics of sedimentary landscapes due to fluvial and aeolian flows requires an...
PhDThe aeolian threshold condition is identified as defining the critical state between a static se...
Aeolian sand beds exhibit regular patterns of ripples resulting from the interaction between topogra...
Sand dunes and ripples result from the interaction between topography, hydrodynamics and sediment tr...
International audienceWe report on wind tunnel measurements on saltating particles in a turbulent bo...
International audienceWe report on wind tunnel measurements on saltating particles in a turbulent bo...
International audienceAeolian sand beds exhibit regular patterns of ripples resulting from the inter...
We hypothesize that large eddies play a major role in the entrainment of aeolian particles. To test ...
International audienceVia wind tunnel experiments on aeolian sand transport, we provide evidences th...
Aeolian transport is an important mechanism for the transport of sand on Earth and on Mars. Dust and...
When air blows across the surface of dry, loose sand, a critical shear velocity must be achieved to ...
Coastal aeolian sediment transport is influenced by supply-limiting factors caused by sediment sorti...
Virtually all mechanistic predictions of landscape evolution are underpinned by predictions of sedim...