Wind Slabs
- Hochgebirge
- Waldgrenze
- Unterhalb der Waldgrenze
- Wahrscheinlichkeit
- Possible
- Größe
- 1–2
There is weak snow at the base of the snowpack on middle- and upper-elevation and north-facing slopes. Recently wind-drifted slopes are the most likely problem areas. Seek out smaller, lower-consequence terrain free from terrain traps and evaluate the snowpack for instability related to persistent weak layers and wind loading.
Dangerous avalanche conditions exist in the mountains around Big Sky, West Yellowstone, Island Park, and Cooke City. Yesterday, Ian and his partner remotely triggered an avalanche that broke 6 feet deep in the Taylor Fork while they were riding to investigate several different avalanches in the S. Madison Range (video). On Buck Ridge in the N. Madison, a deep avalanche broke either naturally or was triggered from a distance (details and photo). On Tuesday, an avalanche broke one-quarter mile wide and up to 12 feet deep on Scotch Bonnet Mountain in Cooke City (details and photo). Persistent slab avalanches breaking widely across slopes on deeply buried weak layers are the primary concern throughout the forecast area.
Wind slab avalanches at upper elevations where last night’s precipitation fell as snow will break on slopes with fresh drifts. Wind-loaded slopes are often those immediately below ridgelines and in upper-elevation gullies, with instability indicated by avalanches and shooting cracks. For example, look at Monday’s slide on Henderson Mountain in Cooke City.
Rain on snow weakens the snowpack and could result in wet loose avalanches. Stay off steep slopes with an unsupportable, wet, and gross snowpack. This will be most prominent in the mountains around West Yellowstone and Island Park.
Regional Differences:
Danger Ratings: