Persistent Slabs
- Hochgebirge
- Waldgrenze
- Unterhalb der Waldgrenze
- Wahrscheinlichkeit
- Possible
- Größe
- 2–3
Layers of weak snow are buried 1-3 feet deep. In neighboring zones, human-triggered avalanches were failing on this weak interface even before the big load of new snow fell earlier this week (photo, photo). In the days since the storm, skiers and riders have triggered multiple slides that failed on this weak interface. On Thursday, Chris investigated an avalanche near Galena Summit that was remotely triggered by skiers from flatter terrain above (video at right/above). In the past two days, I look for these layers in both the eastern and western portions of this zone. Even though the two snowpacks that I encountered differed significantly, weak snow buried about 1.5 feet deep produced unstable snowpack test scores in both places.
The culprit weak layers in all of these slides have been sugary facets that developed in March during clear and cold weather between storms. The distribution and sensitivity of these layers are somewhat irregular. You are most likely to find them on slopes that face E-NE-N-NW. On these aspects, it's best to assume these layers exist and choose lower angled terrain not threatened by steeper slopes above. These slabs are more likely to be reactive in areas where the wind has stiffened the snow surface and added more weight, but they are possible in sheltered terrain as well. On Thursday above the Soldier Mountain Ski Area, a snowmobiler triggered a large wind slab avalanche but fortunately was able to ride out of it (photo). The hard wind slab broke 2-3 feet thick and pulled into very gentle terrain at the ridge crest. It's possible this slide may have involved the persistent weak layers described above.
Dealing with persistent weak layers is tricky business, particularly as they become more deeply buried. Snowpack test results become more difficult to interpret and obvious signs of instability are typically absent. The first clear sign of an unstable snowpack may occur when you trigger a large avalanche. These types of slides can be triggered remotely—from a distance above, below, or to the side of a steeper slope.