Deep Persistent Slabs
- Alta montaña
- Límite del bosque
- Bajo el límite del bosque
- Probabilidad
- Possible
- Tamaño
- 2
The Jan 5 surface hoar layer buried 1 to 1.5 feet deep in the snowpack has been reactive since Tuesday in the areas where it exists. Buried surface hoar is an uncommon weak layer for this region. This weak layer has been very slow to stabilize. It is now one week old and day to day snowpit data continues to identify ongoing problems. This weak layer is certainly not abiding by any mythical "24 hour rule". Have a look below at the snowpit videos taken from a Level II avalanche class yesterday on Andesite Ridge (Donner Summit area) to see examples of unstable, propagating test results.
Currently, the areas where avalanches are most likely to be triggered are not in the traditional wind loaded zones along the ridgelines, but in steep open areas at treeline and below treeline on N-NE-E aspects and possibly SE aspects. Have a conversation with your travel partner(s) and make sure everyone understands that this is an at treeline and below treeline problem. Shift the focus from the traditional wind loaded avalanche start zones up high to the steep wind protected open areas lower down on the mountain.
This weak layer does not exist or is not reactive in all areas. Don't let a lack of evidence of instability in one portion of the forecast area affect how decisions are made when moving to another part of the forecast area. Continue to search out signs of instability including recent avalanche activity, even if it "looks old" buried under an inch or two of recent snowfall. If you see evidence of recent avalanche activity, there is a good chance that the buried surface hoar exists in the area. Snowpit data is very helpful, but it has to come from the right locations and it never proves stability. If in doubt, stick to slopes less than 32 degrees in steepness. Use an analog inclinometer or smartphone app to measure slope angles rather than guessing.