Persistent Slabs
- Alta montaña
- Límite del bosque
- Bajo el límite del bosque
- Probabilidad
- Possible
- Tamaño
- 2–3
Yesterday, skiers remotely triggered an avalanche on an ENE-facing slope near 9300' on Avalanche Peak near Galena Summit. Snowmobilers may have remotely triggered a wide avalanche in similar terrain in the Little Beaver Creek drainage near Smiley Creek; if they did not trigger it, then it released naturally. Weak layers of snow buried in the upper 3 feet of the snowpack produced two human-triggered avalanches last weekend (photo, photo) before the heavy load from the recent storm. The faceted layers that are likely responsible for all of these slides exist across the majority of the advisory area. You are most likely to find these faceted layers on slopes that face E-NE-N-NW. On these aspects, assume the weak layers exist and are capable of producing large avalanches.
Triggering one of these slides is more likely in wind-loaded terrain but is possible in sheltered terrain as well. Persistent slab avalanches fail in ways that catch even experienced backcountry travelers by surprise. They may break much wider than you expect, wrapping around terrain features that typically confine wind and storm slabs. These types of slides can be triggered remotely—from flatter terrain above, below, and to the sides of avalanche starting zones. Avoid consequential avalanche paths where these weak layers exist. Build a wide safety margin into your travel plans today.