Persistent Slabs
- Alpine
- Treeline
- Below treeline
- Likelihood
- Unlikely
- Size
- 1–2
Instabilities involving old slabs breaking on old weak layers are rare due to slab faceting and wind erosion. There is still a lingering threat of triggering a slab that fails 1.5 to 3 feet deep on depth hoar, facets, and faceted crusts without obvious warning signs. In the Southeast Mountains, slabs are most likely to be triggered in terrain where slabs are more cohesive from previous windloading. The most reliable way to manage this problem is by choosing slope angles less than 30 degrees. Wind-eroded and wind-protected terrain offers a safer snowpack where slabs are typically lacking.
A secondary issue comes in the form of thin, hard lens-shaped slabs that formed during last week's wind events. This problem exists at all elevations, though most commonly an issue on the north half of the compass, where it forms over weak facets. Although they are typically stubborn to trigger now, skirt around these harder drifts in consequential terrain to avoid the threat of getting pushed into trees, rocks, or gullies.
A persistent slab avalanche that likely failed during the recent wind event (1/16 to 1/17)
Photo: Crested Butte Avalanche Center