Persistent Slabs
- Hochgebirge
- Waldgrenze
- Unterhalb der Waldgrenze
- Wahrscheinlichkeit
- Possible
- Größe
- 1.5–2.5
Multiple persistent weak layers exist in the top 3 feet of the snowpack. SAC forecasters were in this zone yesterday and found these layers in several snowpits (video above/right). They appear to be most problematic on middle and upper elevation sunny slopes where they exist as a combination of crust+facets. However, there have been a few reports of facets and/or surface hoar found on shadier aspects. While these weak layers are showing signs of improvement, it's only been 3 days since our last reported avalanches—that's not that long!
Let's say we received a report of a triggered avalanche today, and you asked me to guess the terrain it occurred in. Okay, challenge accepted. Here's my answer: a steep (greater than about 35 degrees), upper elevation slope that was recently wind loaded. When persistent weak layers are going through the healing process, these types of slopes often take the longest to stabilize and are where you are most likely to trigger a slide. You can recognize wind-loaded terrain by corniced ridgelines, drifted or pillowed snow features, and/or stiffer snow at the surface where you sink less deep into the snowpack.
ADDITIONAL DISCUSSION: You may encounter 1-2 foot thick wind slabs in exposed terrain. Look for them below prominent ridgelines, in and beneath cliff bands, and in chutes and couloirs. The wind slabs have had time to stabilize, but large features on very steep slopes deserve respect.