Persistent Slabs
- Alpine
- Treeline
- Below treeline
- Likelihood
- Possible
- Size
- 1–2
Wind slabs that were created by the outflow event at the beginning of February, have been observed to remain reactive in small pockets in isolated places. Wind slabs were deposited on top of a 3 foot deep upside down storm slab from 1/28-29. The poor structure near the top of this storm snow is what has made these wind slabs persistent. Where instabilities have been noted failure is occurring ~ 4 inches below wind slabs where a density change exists.
This instability has been noted where wind slabs are thinner (1 foot or less) and smaller in size spatially. The larger and thicker wind slabs have been set up more thoroughly and are unlikely to be affected by a person or machine due to their strength. If one of these larger wind slabs were to be triggered it would likely occur near the periphery where the slab is thinner.
The sensitivity and likelihood of this avalanche problem is slowly decreasing. The 1/28 storm snow is settling, this process has been slow as temperatures have been very cold. The settling process is making the drier snow near the bottom of the slab more dense and the heavier snow at the top is losing moisture and becoming drier. The result has been slowly improving structure within storm snow that will lower the likelihood of persistent wind slabs.
4 to 10 inches of new snow has covered these old wind slabs making them difficult to visually identify. Pay attention to signs of instability such as shooting cracks or collapsing that would indicate this problem still exists in the area you are traveling.
(2/3/2024)
Reactive pencil hard windslab 8 inches thick.
Photo: Joshua McDonald