Bollettino valanghe

Northern Wallowas

Wallowa Avalanche Center
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Pericolo valanghe

Sun
Alta quota
3 · Marcato
Limite del bosco
3 · Marcato
Sotto il limite
2 · Moderato
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In sintesi

Triggering a newly formed wind slab near and above the treeline will be likely today where the wind has packed the snow into a more cohesive slab.  Visual clues of wind slab formation include cornices, pillows, dune-like formations, and shooting cracks from your skis, board, or machine.   While becoming more unlikely, it remains possible to trigger a deeper and more destructive avalanche on one of several persistent weak layers that are buried 2-8 feet within our snowpack.   Increase your safety margins today; look for low-angle terrain without overhead hazards, limit exposure to steep slopes, and avoid regrouping in avalanche runout zones.  

Today's avalanche forecast is sponsored by Magic Woodland Studio.   

Problemi valanghivi

  • Wind Slabs

    • Alta quota
    • Limite del bosco
    • Sotto il limite del bosco
    Probabilità
    Likely
    Dimensione
    1–2.5

    Fresh wind slabs will be touchy and increase in size and distribution throughout the weekend.  Expect to find wind slabs near and above the treeline and use visual clues such as shooting cracks, harder snow over softer snow, dune-like formations, and drifts to understand the distribution.  With the likelihood of strong winds today, expect to find wind slabs develop in locations that typically are less prone to wind slab development.  Travel in the alpine today will likely be downright undesirable. 

    (12/30/2022)

    Example of cracking around your boards: Photo taken Friday at 8400' on an east facing slope near ridgeline. Seeing cracks project out in front of your ski tips is a red flag signal that the snow you are traveling on is unstable.

  • Deep Persistent Slabs

    • Alta quota
    • Limite del bosco
    • Sotto il limite del bosco
    Probabilità
    Possible
    Dimensione
    1–3

    The definition of a deep persistent slab:  A thick, hard cohesive slab of old snow overlying an early season persistent weak layer located in the lower snowpack or near the ground.  The structure is conducive to failure initiation and crack propagation.  Typically characterized by low likelihood and large destructive size.  Development occurs early in the winter and is characterized by periods of activity followed by periods of dormancy, then activity again.  

    Our snowpack is holding several concerning persistent weak layers that vary in depth from the upper third of the snowpack to the ground.   Forecasters and observers are finding reactive and often alarming snowpack results on all of these persistent weak layers: 

    1. )The Christmas Rain Crust which is 2-4 feet from the snow surface and varies in thickness from 4" at lower elevations to 1" or less above the treeline.  The snow around this crust is becoming increasingly weak and faceted.  In locations where a cohesive slab of snow sits above this interface, human-triggered avalanches remain possible.   More observations from the Southern Wallowas are indicating that the New Year's Eve human-triggered avalanche near Fish Lake likely occurred on the Christmas crust in association with a layer of buried surface hoar.  My prediction is that this crust and the weak snow around it is going to be a player in the game for quite some time- especially when we put some additional weight on it. 

    2.)  Buried Surface Hoar in the Western and Southern Wallowas has been found on Southeast through North through Southwest aspects near and below the treeline.  While the distribution of this persistent weak layer is more specific- perhaps even spotty, a large avalanche would be the result of failure and propagation on this layer.   Yesterday I found a layer of buried surface hoar at 7,000' on a N aspect near Fish Lake.  It was not reactive in my two snowpack tests, but still well preserved in the snow, just above the Christmas Crust.  

    3.)  Basal facets near the ground are most everywhere throughout our forecast area.  Now buried up to 8 feet in many locations, these are the monsters in the basement.  While becoming increasingly hard to trigger this layer, a small to large avalanche on one of the aforementioned weak layers above could produce enough weight to trigger a very large avalanche failing on the ground.  Areas, where we are more concerned with this happening, are zones where the snowpack depths are shallow- say 2-4 feet.  Upper elevation areas that have seen snow stripped by wind and harbor shallower snowpacks are one location that I would be especially concerned with triggering one of these deep slab avalanches.  Another location would be rocky areas in the mid-elevation band.  Finally, in the lower elevations, where snowpack depths are shallower, the weight of a rider would be more likely to have a greater impact on this weak snow near the ground.  

    Utilizing slope scale evaluation before committing to terrain features greater than 30 degrees in slope angle will be critical to avoid a deep slab avalanche.  There is a high amount of uncertainty when dealing with this type of avalanche problem, and it is recommended to hedge your bets with wide terrain margins.  Excellent riding conditions exist on the north side of the compass in terrain that is less than 30 degrees.   It is recommended to focus on the poor snowpack structure, not potentially inconsistent stability test results before committing to riding any slope steeper than 30 degrees. 

    (1/2/2023)

    Snowmobile triggered avalanche above Fish Lake.  7,000' on a North Aspect.  We feel the bed surface was the Christmas Crust and weak layer, buried surface hoar.  Bad combo.

    Photo: Cameron May-Penelerick

Avalanche Discussion

Caleb Merrill did an excellent job informing us of the degree of uncertainty we currently face with our deep persistent slab problem.  I would strongly recommend you read his breakdown of the current conditions in our snowpack blog.    Although some of you may be tired of hearing about this deep persistent slab, it's not time to disengage.  Within the last 10 days, we have seen natural and human-triggered avalanches across our forecasting zones failing on either weak faceted snow near the ground or buried surface hoar near the Christmas Crust.  

We need to see roughly three weeks, accompanied by a couple of significant storms (or wind events) to put this avalanche problem to rest.  This requires all of us to remain engaged and curious.  You will likely see folks out high marking, skiing, riding slopes greater than 30 degrees and not triggering avalanches.  Possibly they have no understanding of avalanche terrain, avalanche problems, or have not read the forecast.  Ignorance is bliss, and we can receive different types of feedback after a day in the mountains that gives us a certain bias about the conditions.  At the end of the day it's good to ask yourself did we make good decisions, or did we just get lucky?

Truth be told we can and will continue to find good riding conditions and can have a great day in the mountains avoiding slopes that are steep enough to slide, and not hanging out in runout zones.  

Regioni coperte