Avalanche forecast

Soldier & Wood River Valley Mtns

Sawtooth Avalanche Center
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Avalanche danger

Fri
Alpine
2 · Moderate
Treeline
2 · Moderate
Below
1 · Low
Out of date — this forecast expired 4 years ago. You’re viewing past conditions, not the current bulletin.

Highlights

To significantly reduce the odds of triggering a large avalanche, avoid steep, open slopes that are exposed to the wind. Look for evidence of recent wind loading such as cornices, pillows, and drifted snow. On these slopes, you could trigger avalanches breaking on weak layers buried 1-3 feet deep. Several natural and human-triggered avalanches occurred in wind-affected terrain in this or neighboring zones in the past four days. 

Avalanche problems

  • Persistent Slabs

    • Alpine
    • Treeline
    • Below treeline
    Likelihood
    Possible
    Size
    2–3

    Multiple persistent weak layers exist in the top 3 feet of the snowpack. These weak layers were responsible for a number of natural and human-triggered avalanches over the past week. They appear to be most problematic on middle and upper elevation sunny slopes where they exist as a combination of crust+facets. However, there have been a few reports of facets and/or surface hoar found on shadier aspects. While these weak layers are showing signs of improvement, it's only been 3 days since our last reported avalanches—that's not that long!

    Let's say we received a report of a triggered avalanche today, and you asked me to guess the terrain it occurred in. Okay, challenge accepted. Here's my answer: a steep (greater than about 35 degrees), upper elevation slope that was recently wind loaded. When persistent weak layers are going through the healing process, these types of slopes often take the longest to stabilize and are where you are most likely to trigger a slide. You can recognize wind-loaded terrain by corniced ridgelines, drifted or pillowed snow features, and/or stiffer snow at the surface where you sink less deep into the snowpack.

    ADDITIONAL DISCUSSION: 

    1. Faceted snow exists near the base of the snowpack. While triggering slides on this deeply buried weak layer is unlikely, it can't be ruled out in steep, rocky, wind-affected alpine terrain where snowpack depths are variable. Here, skiers and riders can inadvertently find spots with a thinner snowpack where triggering an avalanche is possible. Augering down with the track of your sled is another "great" way to impact this deeply buried weak layer.
    2. You may encounter 1-2 foot thick wind slabs in exposed terrain. These will be more common in the Soldier Mountains where there's been more recent wind. The wind slabs have had time to stabilize, but large features on very steep slopes deserve respect. 

    (1/1/2023) Debris from a very large avalanche that was remotely triggered above Hyndman Creek in the Pioneer Mountains. This slide failed in a heavily wind loaded area and very likely involved a persistent weak layer. It covered the summer trail with a pile of debris that was 100-150' wide and 4' deep.

Avalanche Discussion

In the past week, we recorded 12 slides in our avalanche database. That doesn't sound impressive compared to the nearly 200 avalanches recorded during the first half of December. But of those 12 slides in the past week, 7 were human-triggered—which is significant. To have human-triggered slides you need three things: an unstable (enough) snowpack, steep terrain, and—humans. We tend to have fewer triggered slides when conditions are obviously dangerous—there are less folks out, and they wisely stick to mellower terrain. (The exception is when conditions are conducive to remotely-triggering slides from gentler terrain.) And there aren't many slides triggered when conditions are stable for obvious reasons. This recent spate of triggered slides is a good example of the overlap of having unstable enough (but not too unstable) conditions and an increased number of humans in the backcountry beginning to nibble at steeper terrain.

Earlier in the winter, we had a remarkably widespread and well-developed layer of faceted snow near the base of the snowpack. This layer formed during the multi-week dry spell back in November. It existed on nearly every slope, and it was easy to predict what it would do when loaded—it would avalanche! Just when that layer was beginning to show improvement, we buried a new round of weak layers before and immediately after Christmas. On sunnier slopes (SE-S-SW-W) these layers are a mix of crusts and facets and seem to be more problematic. On the shadier side of the compass, you might find facets and/or surface hoar. These are typically buried beneath a 1.5-2.5' thick slab. These layers are not as well-developed nor as widespread as our early-season weak layer. That sounds like a good thing, right? Not necessarily. You've heard the expression "better the devil you know" right?

Conditions are still ripe for getting surprised. We're in the dreaded gray area—the persistent slab doldrums. A question that helps me in these conditions is this: sure, avalanches are still possible, but where are they most possible? Nearly all of the recent avalanche activity—natural and human-triggered—occurred on steep, upper elevation, wind-loaded slopes. You can greatly reduce your risk of triggering a slide by avoiding these types of slopes where avalanches are "most possible." 

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