The failure of a weak snow layer underlying a cohesive slab is the primary step in the release process of a dry snow slab avalanche. The complex and heterogeneous microstructure of snow limits our understanding of failure initiation inside the weak layer, especially under mixed-mode shear–compression loading. Further complication arises from the dependence of snow strength on the loading rate induced by the balance between bond breaking and bond formation (sintering) during the failure process. Here, we use the discrete element method to investigate the influence of mixed-mode loading and fast sintering on the failure of a weak layer generated using cohesive ballistic deposition. Both fast and slow loading simulations resulted in a mixed-mo...
International audienceWeak layers of snow are thin layers of low density and cohesion that consist o...
Using the analytical model presented in part I of this two-part paper, a new conceptual understandin...
International audienceAn intimate understanding of snow failure, particularly under mixed-mode shear...
Dry-snow slab avalanches start with the formation of a local failure in a highly porous weak layer u...
The failure of a weak snow layer is the first in a series of processes involved in dry‐snow slab ava...
Snowpack weak layers may fail due to excess stresses of various natures, caused by snowfall, skiers,...
International audienceThe mechanical behavior of snow weak layers is a crucial element in dry snow s...
[Departement_IRSTEA]Eaux [ADD1_IRSTEA]Hydrosystèmes et risques naturelsInternational audienceThe mec...
Using the analytical model presented in Part 1 ofthis two-part paper, a new conceptual understanding...
ABSTRACT. Dry-snow slab avalanches initiate from a failure in a weak snow layer below a cohesive sla...
Dry-snow slab avalanche release is preceded by a fracture process within the snowpack. Recognizing w...
International audienceSnowpack weak layers may fail due to excessstresses of various natures, caused...
International audienceWeak layers of snow are thin layers of low density and cohesion that consist o...
Using the analytical model presented in part I of this two-part paper, a new conceptual understandin...
International audienceAn intimate understanding of snow failure, particularly under mixed-mode shear...
Dry-snow slab avalanches start with the formation of a local failure in a highly porous weak layer u...
The failure of a weak snow layer is the first in a series of processes involved in dry‐snow slab ava...
Snowpack weak layers may fail due to excess stresses of various natures, caused by snowfall, skiers,...
International audienceThe mechanical behavior of snow weak layers is a crucial element in dry snow s...
[Departement_IRSTEA]Eaux [ADD1_IRSTEA]Hydrosystèmes et risques naturelsInternational audienceThe mec...
Using the analytical model presented in Part 1 ofthis two-part paper, a new conceptual understanding...
ABSTRACT. Dry-snow slab avalanches initiate from a failure in a weak snow layer below a cohesive sla...
Dry-snow slab avalanche release is preceded by a fracture process within the snowpack. Recognizing w...
International audienceSnowpack weak layers may fail due to excessstresses of various natures, caused...
International audienceWeak layers of snow are thin layers of low density and cohesion that consist o...
Using the analytical model presented in part I of this two-part paper, a new conceptual understandin...
International audienceAn intimate understanding of snow failure, particularly under mixed-mode shear...