Bulletin d’avalanche

Allgäu Alps West

LWD Vorarlberg
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Danger d’avalanche

All elevations· Matin
2 · Modéré
Above 2,400 m· Après-midi
2 · Modéré
Below 2,400 m· Après-midi
3 · Marqué
Périmé — ce bulletin a expiré 5 months ago. Vous consultez des conditions passées, pas le bulletin en cours.

Points saillants

Rapid daytime rise in avalanche danger and wet-snow avalanches

Problèmes avalancheux

  • Persistent weak layers· Matin

    • Above 2,200 m
  • Wet snow· Matin

    • Below 2,200 m
  • Wet snow· Après-midi

    • Below 2,400 m
  • Persistent weak layers· Après-midi

    • Above 2,200 m

Weather Forecast

After a night of partially cloudy skies, sunny mountain weather with only a few cloudbanks in high altitudes, and convective cloud build-up during the afternoon. It is expected to be even milder than on previous days. Temperature at 2000m: from 2 to 8 degrees; at 3000m: -1 to -1 degree. Brisk westerly winds at high altitude.

Tendency

Starting on Easter Weekend, danger of wet-snow avalanches will increase during the course of the day through ongoing rise in temperatures.

Avalanche Activity

Rapid daytime rise in avalanche danger and wet-snow avalanches

Slab avalanches can be triggered by large additional loading and grow to medium size. Danger zones occur in steep ridgeline terrain, behind sharp drops in the landscape, in wind-loaded gullies and bowls. Particularly in the northern half of high altitude zones, isolated avalanches can fracture in the weak layers in the uppermost metre of the snowpack. In very steep terrain, wet-snow slides and avalanches are possible due to solar radiation and daytime warming. On steep grass-covered slopes, gliding snow activity is gradually increasing.

Snowpack Structure

On shady slopes and in terrain with flat solar radiation, the uppermost layers are often still soft. Particularly in high altitude ridgeline and pass areas, small fresh and older snowdrift accumulations are still prone to triggering. The mid-part of the snowpack consists widespread of well consolidated, compact layers which on shady high-altitude slopes blanket a poorly structured old snow fundament. At lower altitudes, mild temperatures, rain impact and solar radiation will make the snowpack thoroughly wet to an ever-increasing degree.

Bulletin data: Avalanche Warning Service Vorarlberg (CC BY 4.0)

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