Persistent Slabs
- Alta quota
- Limite del bosco
- Sotto il limite del bosco
- Probabilità
- Possible
- Dimensione
- 2
Weak layers of facets and depth hoar are buried near the base of the snowpack in this zone. As time passes without major loading events, triggering a slide on one of these layers becomes unlikely. But unlikely things do happen.
On Saturday, I was in the White Cloud Mountains and watched as a group of riders in low angle terrain remotely collapsed a large alpine bowl nearby (see photo here). Cracks traveled over one quarter of a mile from where they were playing, up to near the top of the peak above, and the entire snowpack shifted downhill...and then stopped. Had this thick slab of snow (see photo here) continued to slide, the resulting avalanche would have been large and destructive. The overlying slab is much thinner in this zone (see photo at right), thanks to a lack of snowfall.
This is the sort of problem we are dealing with when we talk about weak snow at the base of the snowpack. Be aware that even if you aren’t directly in steep terrain yourself, the snow that you are traveling on may be connected to that sort of terrain.
ADDITIONAL DISCUSSIONOn Saturday, snow professionals on Galena Summit found small but sensitive wind drifts (see photo here). On Sunday, an observer traveling just north of this zone reported encountering similar thin, hard, sensitive wind slabs (see photo here). Similar slabs may be forming today with the increase in wind speed and shift in wind direction, but without much snow to transport these slabs should remain small and isolated to upper elevation slopes.