Persistent Slabs
- Hochgebirge
- Waldgrenze
- Unterhalb der Waldgrenze
- Wahrscheinlichkeit
- Possible
- Größe
- 1.5–2
In the past week, skiers and riders triggered several 1-2 foot thick avalanches. Many of the slides appeared to fail on a thin layer of surface hoar. The most recent slide was triggered Tuesday, as a rider north of Fairfield crossed a slope for the second time (report).
Recent avalanche activity is focused on NW-N-NE aspects between 8000-10,000' in elevation (view graphic). The avalanches released in sheltered and wind-affected terrain. The surface hoar layer responsible for many of these slides is thin, and some of the crystals are relatively small, making them difficult to identify in snowpits (photo). Sunnier slopes that lack surface hoar may harbor a weak layer of facets and/or crusts. JP found this setup yesterday in the Headwaters of the Salmon River (photo).
Persistent slab problems are hard to deal with. Avalanches may break wider than expected or higher on the slope above you. Tracks on a slope don't mean it's safe. You may be able to trigger a slide after several riders have safely climbed or descended a given slope. You may or may not experience snowpack collapsing and/or cracking while traveling. These red flags are obvious signs of instability.
You can significantly reduce your odds of triggering a slide by steering clear of large wind drifts and by avoiding very steep middle and upper elevation slopes on the northern half of the compass.
ADDITIONAL DISCUSSION: In addition to the persistent weak layers in the top few feet of the snowpack, there are more deeply buried layers to keep on your radar. These facets (often found near crusts) are buried beneath dense, 2-4+ thick slabs—making them difficult to trigger but capable of producing very dangerous avalanches. While triggering them is unlikely, it can't be ruled out in steep, rocky, wind-affected terrain. Slopes like these have variable snow depths, with thinner areas of the snowpack that allow us to impact deeper weak layers.
(1/15/2023) This avalanche was triggered by motorized users in Pole Creek, probably on January 14th. It likely failed on a persistent weak layer buried in the first week of January. 9200', N.