Bollettino valanghe

Northern Wallowas

Wallowa Avalanche Center
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Pericolo valanghe

Sat
Alta quota
2 · Moderato
Limite del bosco
2 · Moderato
Sotto il limite
2 · Moderato
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In sintesi

Triggering an avalanche up to a foot deep in recently wind drifted snow remains possible today on Northwest, North, Northeast, and East aspects near and above treeline.  If you see rounded pillows of wind drifted snow or cracking around your boards or machines, avoid these areas.   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.  A human triggered avalanche is more likely to fail on one of these layers in rocky areas that hold a shallower snowpack. 

Today's forecast is sponsored by Robert Brooks Painting

Problemi valanghivi

  • Wind Slabs

    • Alta quota
    • Limite del bosco
    • Sotto il limite del bosco
    Probabilità
    Possible
    Dimensione
    1–2

    Moderate to strong south winds on Wednesday developed wind slabs up to a foot deep on leeward facing terrain along ridgelines and cross loaded mid slope terrain features.  While these windslabs will likely be less reactive today, it still remains possible for the weight of a rider or machine to trigger a small to large lingering windslab.  If you are seeing recent wind slab avalanches in the terrain where you are recreating, make the choice to ride in terrain that is more protected from the wind.  Look for clues on the surface such as hollow sounding rounded pillows of snow, cracking around your boards or machine.  Avoid riding above terrain traps such as cliffs, gullies, or slopes that quickly transition to flat terrain where even a small avalanche could confine avalanche debris into larger amounts.  

    (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.  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 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 Years Eve human triggered avalanche near Fish Lake may have occured on the weak snow around the Christmas Crust, not the 12/8 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 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. 

    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)

    Human triggered avalanche likely failing on either buried surface hoar or the Christmas Rain Crust.  

    Photo: Cameron May-Penelerick

Avalanche Discussion

If the complexity of our snowpack is making your head spin a bit, you are in good company.  While we can't control the layering of the snowpack or the weather that has created it, we can control how we engage with avalanche terrain. 

The Wind Slab problem today should be pretty clear to identify and avoid, while the Deep Persistent Slab problem, by definition is a bit trickier.  

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 the Deep Persistent Slab problem.  If you are unsure how to evaluate the snowpack structure for this type of avalanche problem, simply choose terrain that is not capable of producing avalaches.  Excellent riding conditions exist on the north side of the compass in terrain that is less than 30 degrees.   Check out the videos below to see what forecasters have been finding in their snowpits over the last week. 

Regioni coperte