Bollettino valanghe

Galena Summit & Eastern Mtns

Sawtooth Avalanche Center
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Pericolo valanghe

Mon
Alta quota
2 · Moderato
Limite del bosco
2 · Moderato
Sotto il limite
1 · Debole
Non aggiornato — questo bollettino è scaduto 4 years ago. Stai vedendo condizioni passate, non il bollettino in corso.

In sintesi

Large human-triggered avalanches failing on layers of weak snow are possible. Recently formed wind drifts and slabs are likely to be small but may be sensitive to your weight. You can reduce your risk today by steering clear of slopes that have been affected by recent winds.

Problemi valanghivi

  • Persistent Slabs

    • Alta quota
    • Limite del bosco
    • Sotto il limite del bosco
    Probabilità
    Possible
    Dimensione
    1.5–2.5

    Several weak layers exist in the snowpack. You're most likely to trigger avalanches on weak layers that are closer to the surface, but slides on deeper weak layers remain a real possibility here. The distribution, sensitivity, and depth of these layers vary across the zone and from slope to slope. Let's take a closer look:

    • Surface hoar is buried 1-1.5' deep on many shady (E-N-W) slopes. On slopes that face the sun, you'll find crusts with facets on top at this depth. In this zone, this layer is most problematic where recent wind loading has created a stiffer slab in the upper snowpack.
    • Older weak layers—crusts and/or facets, and spotty surface hoar—exist deeper in the snowpack. These are buried beneath dense, 2-4' thick slabs, making them difficult to trigger but capable of producing very dangerous avalanches. You're most likely to trigger a slide involving these deeper weak layers in rocky, wind-affected, alpine terrain. Slopes like these have variable snow depths, with thinner areas of the snowpack that allow us to impact deeper weak layers. The recent persistent slab avalanche in the Pioneer Mountains is a great illustration of this terrain (above/right, details)

    Overlapping, variable weak layers make avalanche conditions hard to predict. You can reduce your risk of triggering a large persistent slab avalanche by avoiding slopes greater than about 35 degrees where the wind has shaped the snowpack. Look for obvious wind textures like drifts and dunes that indicate that the wind has been at work. Very stiff snow surfaces that support the weight of you and your machine are a clear sign the wind has been at work. 

    (1/24/2023) This recent large avalanche occurred on the shoulder of Duncan Ridge in the Pioneer Mountains. It appears to be a heavily wind-loaded slope that broke on a persistent weak layer. A smaller wind slab avalanche is visible further right in the image. 10,100', WSW.

  • Wind Slabs

    • Alta quota
    • Limite del bosco
    • Sotto il limite del bosco
    Probabilità
    Possible
    Dimensione
    1–1.5

    You'll find a patchwork of new and old wind slabs at and near the surface. A multi-day wind event earlier this week constructed stiff, dense wind slabs. 3-6" of new snow+wind over the past two days built another batch of softer slabs on top of these older slabs. Today, wind slabs will be variably reactive, and the most recent slabs are likely to be the most sensitive to your weight. Slabs are most likely in upper elevation terrain, though you may find them in exposed middle elevation terrain as well, thanks to the strength of the wind.

    Be on the lookout for fresh slabs—if the snow you are moving through becomes deeper or more dense you've likely found one. Cracks shooting out from your skis or sled are a clear sign that you've found an unstable slab. Triggered slides will pick up speed quickly thanks to the stiff/dense snow underneath. Small slides can also pile up debris deeply in terrain traps like road cuts or creek beds (photo here). Consider the consequences of being knocked off your feet and sent downslope in the terrain you are in.

    (1/24/2023) This small wind slab avalanche occurred recently above the Hyndman Creek trailhead, likely as a result of the N-NW winds. As the avalanche moved downhill, it appears to have entrained loose surface snow that is becoming faceted, weak, and sugary. 7500', ESE.

Avalanche Discussion

Early season storms brought roughly equal helpings of snow across our forecast area. This helped to build a snowpack that was somewhat homogenous across the region. However, over the past month, snowfall has favored our northern and western mountains and we've seen a significant divergence in the character of our snowpacks. In a broad sense, you can lump them into two categories: shallow and deep. The Galena Summit and Eastern Mtns Forecast Zone falls into the shallow category.

3-5 feet of snow are on the ground in this zone. Weak layers buried in November and December are closer to the surface here, and impacting these weak layers with our weight remains a possibility. The prominent layer of surface hoar that was buried in January hasn't seen as much of a load in this area and in most locations you need the additional stiffness and weight from wind-loading for this layer to be a problem. 

With prominent weak layers in the snowpack, fresh wind slabs at the surface, and an ongoing trickle of snowfall, the decision to choose simpler terrain today is an easy one. The consequences of triggering avalanches can vary significantly. Triggering a small slide in terrain free of rocks and trees and terrain traps is much safer than triggering a slide in extreme, rocky, treed terrain with a terrain trap at the bottom. Spend some time thinking about snowpack complexity and the consequences of being caught in a slide as you are choosing your terrain for the day.

Today's very cold temperatures add another layer of hazard to the mountain environment. The consequences of even minor injuries or mechanical issues with your machine can be amplified by arctic temperatures. Pack an extra layer or two and some extra food today.

Regioni coperte