Bollettino valanghe

Whitefish Range

Flathead Avalanche Center
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Pericolo valanghe

Fri
Alta quota
1 · Debole
Limite del bosco
1 · Debole
Sotto il limite
1 · Debole
Non aggiornato — questo bollettino è scaduto 6 years ago. Stai vedendo condizioni passate, non il bollettino in corso.

In sintesi

You can find exceptions to an otherwise quiet snowpack on upper elevation slopes without a stiff crust near the surface. Above about 6,500' you may be able to trigger an avalanche that breaks 1 to 2 feet deep on buried weak layers. Treat slopes with breakovers and rocky outcroppings with suspicion. You can find good riding conditions on planar slopes where there's a few inches of soft snow on top of the crust. 

Problemi valanghivi

  • Persistent Slabs

    • Alta quota
    • Limite del bosco
    • Sotto il limite del bosco
    Probabilità
    Unlikely
    Dimensione
    2

    High elevation slopes that area not covered by the 1/13 crust? Steep slopes with rocky outcrops or rollovers? Grey stripes of buried surface hoar and faceted crusts about 1 to 2 feet down in your snow pit? If the answer is "yes" to any of these questions, you've found the terrain where persistent slab avalanches remain a concern. The crust reaches to about 6,500-7,000 feet depending on where you go. Where it's supportable, you and your machine will have a tough time collapsing the buried weak layers. The safest slopes are planar with a deeper, uniform snowpack and those free of breakovers and rocky areas.

    (1/25/2021) Slopes that are not covered by the 1/13 crust, that did not slide during the last avalanche cycle, are still suspect for the persistent slab problem.

Avalanche Discussion

The snowpack has been faceting over the past week creating loose, sandy riding conditions. That's been especially true at higher elevations where it has been coldest. On Tuesday, a party on the east side of Mt. Grant watched icefall trigger a large loose dry avalanche  which started around 8,000 feet and ran down to mid-elevations. The same day, another team climbing in the southern part of Glacier noted a deeply faceted snowpack on shady slopes above 8,000 feet. The windward slopes of our region have been scoured down to the 1/13 crust, or they have trace amounts of loose snow atop old wind board.

Wednesday brough a small change to the otherwise calm weather pattern of late. Winds picked up a bit and a few inches of snow accumulated here and there. Mt. Aeneas and Lake McDonald were windiest with light winds and gusts in the 20s elsewhere. The Noisy Basin, Tunnel Ridge, and Flattop Mountain weather stations got the most new snow - 3 to 5 inches in total. 

There are weak layers of surface hoar and faceted crusts buried 1 to 2 feet below the surface. The last avalanches failing on these layers ran on the 13th before the snow surface refroze into a stout crust. Since then there have been no reported collapses or slab avalanches. The most recent feedback we have from these layers is from stability tests which show that they can still propagate a fracture across the slope. So where can you initiate the fracture that results in a large avalanche? On steep slopes without the 1/13 crust, which reaches to about 7,000 feet, you may still be able to collapse one of these weak layers. Or in areas with a shallower snow cover or with trigger points such as rocky outcrops and convex breakovers. I'll still be giving that kind of terrain a healthy margin for error and plan my day with planar, well-supported slopes in mind.

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