Persistent Slabs
- Alpine
- Treeline
- Below treeline
- Likelihood
- Unlikely
- Size
- 1–2
I skied in upper elevation terrain just east of this zone on Saturday and, unsurprisingly, found a very thin and weak snowpack (video here). A similar snowpack exists in much of this zone. Don't believe me? Walk out to an undisturbed snowpack in your yard, break through whatever crust you find on top, and try to make a snowball with the snow you find underneath. This is the type of snow we are describing when we talk about "weak, sugary facets."
With just a few inches of fresh snow in the past two weeks, most slopes lack a slab on top of this weak snow. The last reported avalanche in this zone occurred over 2 weeks ago when ski patrollers at Bald Mountain triggered an avalanche during mitigation work before opening the ski area (photo at right). The slide failed on a wind-loaded slope harboring weak, sugary, faceted snow in the lower part of the snowpack. This exact snowpack scenario—hard, wind-drifted snow overlying weak, faceted snow—is where it may remain possible to trigger a slide. While triggering a slab avalanche is unlikely, I'd still pay attention in very steep, wind-loaded terrain, especially at elevations over about 9000'.
ADDITIONAL DISCUSSIONYesterday near Galena Summit, a skier intentionally triggered a small wind slab formed from Sunday night's snowfall. Even less snow fell in this zone, but similar small slabs may exist in exposed, upper elevation terrain here. While small, encountering one of these slabs in very steep and rocky terrain, or terrain with lots of trees, could have high consequences. Look for signs of wind-loading such as dune-like drifts and ripples in the snow surface to help you identify wind-affected slopes.
Read a bit more about crusts, facets, and wind slabs in the Forecast Discussion section below.