Persistent Slabs
- Alta montaña
- Límite del bosque
- Bajo el límite del bosque
- Probabilidad
- Likely
- Tamaño
- 1.5–2.5
Triggering a dangerous persistent slab avalanche remains likely on many slopes. Weak layers (sugary facets, surface hoar, and/or crusts) are buried beneath a 1.5-2.5' thick slab. This poor snowpack structure continues to produce clear evidence of being unstable. Yesterday, skiers on Galena Summit triggered small avalanches (photo), while observers in the Wood River Valley reported widespread snowpack collapsing. Further north on Banner Summit, I remotely triggered a large persistent slab avalanche (photo, video).
The best/only way to avoid triggering a persistent slab avalanche is by sticking to lower slope angles. You could trigger an avalanche in both wind-affected and wind-sheltered terrain, although wind-loaded slopes are most dangerous and likely to produce a larger slide. Remote triggering (explanatory video here) is also possible—from gentler terrain above, below, and to the sides of steep slopes.
ADDITIONAL DISCUSSIONThis zone received 4-7" of snow on Sunday along with moderate to strong winds. Wind slabs that formed during this storm have likely stabilized, but a few may remain sensitive to your weight. Any wind slab you trigger could "step down" into the more deeply buried weak layers described above, producing a much larger avalanche.
(12/3/2022) Large natural persistent slab avalanche on Gladiator Peak (behind Galena Lodge) that ran Dec 1 or 2. NW, 9600'.