Persistent Slabs
- Alta quota
- Limite del bosco
- Sotto il limite del bosco
- Probabilità
- Possible
- Dimensione
- 2–3
Last week's storm formed slabs up to several feet thick over faceted weak layers. Remote triggers and natural avalanches failing on these persistent weak layers have been gradually diminishing since widespread activity last week. Warm temperatures below treeline on Tuesday and Wednesday have reduced the threat of Persistent Slab avalanches where you find thick, supportive melt/freeze crusts beneath the fresh storm snow. The greatest number of avalanches have occurred on easterly-facing slopes where faceted crusts exist. Similar structures are also found on westerly-facing slopes. On northerly-facing slopes, these slabs formed over a layer of near-surface facets which should be bonding better now. Slabs are larger at higher elevations due to previous wind transport. In a few cases, avalanches have stepped down into older weak layers much deeper in the snowpack, causing destructive avalanches.
Early warning signs for this avalanche problem are rare and feedback is infrequent. You can reduce your chance of triggering this avalanche problem by avoiding recently wind-loaded terrain and unusually shallow terrain. Safer riding is where the snowpack is deep, wind-protected, and on slope angles less than 35 degrees, without steeper slopes above.
3/28: A recent Persistent Slab above Perry Creek in the Southeast Mountains.