Persistent Slabs
- Alpine
- Treeline
- Below treeline
- Likelihood
- Likely
- Size
- 1.5–2.5
A layer of weak snow is buried beneath a 1-2.5' thick slab. This layer (crusts, facets, or a combination of the two) produced a widespread natural avalanche cycle last week, with slides observed on all aspects and at all elevations (incomplete list available here). Yesterday's new snow added weight and structure to the slab on top of this weak layer and observers reported experiencing widespread cracking and collapsing of the snowpack here. These are clear signs that this weak layer is struggling to support the overlying slab.
Persistent weak layers are very tricky to deal with. And, as their name suggests, they tend to stick around for a while. Avalanches are possible in both sheltered and wind-affected terrain today, though you'll be more likely to encounter them where the wind has been building slabs. Remote triggering (explanatory video here) is also possible—a collapse on mellow terrain at the valley floor can travel long distances and release avalanches on steeper slopes above. Pay attention to the terrain you are in and to what is above you.
Many lower and middle elevation slopes that face S-SW-W in this Zone were free of snow before last week's storm and this weak layer does not exist there. However, as you travel around the compass to colder aspects you will find this same weak snow.
(12/2/2022) This avalanche failed on a N/NW-facing slope at 8,100' above the Lake Creek drainage near Ketchum. There were nearby ski tracks observed on the ridge and it may have been remotely triggered from above. It appears to have failed on the widespread layer of weak snow from the mid-November drought.