Persistent Slabs
- Alta quota
- Limite del bosco
- Sotto il limite del bosco
- Probabilità
- Possible
- Dimensione
- 1.5–3
The snowpack currently holds multiple persistent weak interfaces, with the more likely issue being weak faceted snow in the upper snowpack. In wind-affected terrain, this weak snow is capped by old wind slabs, while in more sheltered areas it is buried by snowfall from 3/19–3/20. These weak interfaces may allow isolated trigger points to linger longer than normal, even though recent benign weather has allowed the snowpack to gradually settle. Strong winds over the last six weeks have created highly variable surface conditions, so there is not one consistent setup users can look for across the forecast area. The most likely depth of instability is in the upper 1–2 feet of the snowpack.
This variability makes the snowpack difficult to assess and easy to misread. Users can reduce risk by choosing simple terrain and avoiding terrain traps.
A second, lower-probability but higher-consequence concern is the 1/26 facet layer, which is buried around 2–3+ feet deep in many areas. We continue to identify this layer as widespread on all aspects and at elevations above 1000 feet. Stability tests continue to show an issue with decreasing sensitivity, but the possibility remains for a person to trigger a large avalanche. A human-triggered avalanche reported on Thompson Pass on 3/25 is a reminder of how unpredictable persistent weak layers can be. In that case, a slope was remotely triggered up to 4 feet deep after previously receiving heavy traffic from both ski tourers and snowmachiners. While the slope was relatively small, the event is a good reminder that large avalanches remain possible.
Persistent slab triggered by a large ski touring group on 3/25
Photo: Paul Ramseth