Persistent Slabs
- Hochgebirge
- Waldgrenze
- Unterhalb der Waldgrenze
- Wahrscheinlichkeit
- Possible
- Größe
- 2–3
Late-March storms buried weak layers of faceted snow that formed earlier in the month. Before this most recent storm, human-triggered avalanches occurred in Owl Creek and in the Salmon Headwaters. Now, these weak layers are buried beneath a 1.5 to 3 foot thick slab and can produce an avalanche large enough to bury a skier or rider
This past Wednesday, skiers on a ridgeline remotely-triggered a slide on an ENE-facing, 9300' slope on Avalanche Peak near Galena Summit (video above/right). Observers yesterday and Thursday reported both significant collapses/whoomphs and snowpack tests giving unstable results. Yesterday in the Soldier Mountains, sledders triggered a persistent slab avalanche from the base of the slope—even though this occurred in a different zone, the snowpack layering may be similar.
These unstable layers don't exist everywhere, which makes them more insidious, difficult to manage, and more likely to catch you by surprise. You are most likely to find them on slopes that face E-NE-N-NW. On these aspects, it's best to assume these layers exist and choose lower angled terrain not threatened by steeper slopes above. Remember that persistent slab avalanches can be triggered remotely—from flatter terrain above, below, and to the sides of avalanche starting zones.
ADDITIONAL DISCUSSIONThere are a few other problems to watch out for today:
- Increasing wind speeds yesterday afternoon and overnight may have created small, fresh wind drifts. Previously wind-loaded slopes are more likely to break down to the buried weak layers described above. Use extra caution on any slope that shows signs of wind loading—including a pillowed appearance, stiffer or denser snow, or a rippled texture.
- Warmer temperatures today could lead to wet snow slides, sluffs, and "dribbles". This will primarily be a lower elevation problem but could creep into the mid and upper elevations if the sun stays out longer than forecast.