Lawinenlagebericht

Vest-Finnmark

NVE
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Lawinengefahr

All elevations
2 · Mässig
Veraltet — dieser Lagebericht ist 3 months ago abgelaufen. Du siehst vergangene Verhältnisse, nicht den aktuellen Bericht.

Kernpunkte

Rain will further increase the water content in the snowpack, and wet avalanches may still release naturally in exposed areas.

Wet loose avalanches are the most likely avalanche problem. Most of these avalanches are expected to be small, but medium‑sized avalanches may also occur. Remember that even small avalanches can be dangerous in steep and exposed terrain, as they consist of heavy, dense snow.

At higher elevations, there is still layering in the snowpack. When meltwater penetrates downward, these layers can weaken and produce wet slab avalanches. Such avalanches are difficult to forecast and can be larger than typical loose‑snow avalanches. In addition, glide avalanches may occur where water accumulates above smooth bed surfaces such as rock slabs.

Lawinenprobleme

  • Wet snow

    • Above 700 m

Avalanche Activity

Rain will further increase the water content in the snowpack, and wet avalanches may still release naturally in exposed areas. Wet loose avalanches are the most likely avalanche problem. Most of these avalanches are expected to be small, but medium‑sized avalanches may also occur. Remember that even small avalanches can be dangerous in steep and exposed terrain, as they consist of heavy, dense snow. At higher elevations, there is still layering in the snowpack. When meltwater penetrates downward, these layers can weaken and produce wet slab avalanches. Such avalanches are difficult to forecast and can be larger than typical loose‑snow avalanches. In addition, glide avalanches may occur where water accumulates above smooth bed surfaces such as rock slabs.

Mildvær og regn vil øke vanninnholdet i snødekket ytterligere. Mange steder er snødekket stabilt, smelteomvandlet og drenerer vann godt allerede, men på utsatte steder kan våte skred fortsatt løsne naturlig i dag. Våte løssnøskred er det mest sannsynlige skredproblemet. De fleste ventes å være små, men middels store skred kan forekomme.

Høyt til fjells finnes det fortsatt lagdeling i snødekket. Når smeltevann trenger ned i snødekket, kan disse lagene svekkes og gi våte flakskred. Slike skred er vanskelige å varsle og kan bli større enn typiske løssnøskred. I tillegg kan glideskred forekomme der vann samler seg over glatte underlag som svaberg.

Snowpack Structure

Snøoverflaten har et tydelig vårlig preg, og det har vært kraftig smelting den siste tiden. Sammenhengende snø finnes fra omtrent 200–400 moh og oppover, avhengig av hvor i regionen du befinner deg, med mest snø i nordvendt terreng og i indre strøk. Snødekket er i hovedsak smelteomvandlet. Likevel kan det fortsatt finnes noe lagdeling igjen i skyggesider og på de høyeste toppene. I høyfjellet og i skyggevendt terreng kan det fortsatt finnes eldre svake lag dypt i snødekket. Store skred kan ikke utelukkes ved rask oppvarming, regn eller skavlbrudd.

Tendency

In many areas, the snowpack is melt‑transformed, coarse‑grained, and drains water well. However, wet avalanches may still release naturally in exposed terrain, especially if the mild temperatures become more pronounced than expected. Wet loose avalanches are the most likely problem. Most are expected to be small, but medium‑sized avalanches may occur.

At higher elevations, layering in the snowpack is still present, particularly in northern aspects. With strong meltwater production, water can percolate downward and weaken these layers, potentially triggering wet slab avalanches. These avalanches are difficult to forecast and can be larger than typical loose‑snow avalanches. Glide avalanches may also occur where water accumulates above smooth bed surfaces such as rock slabs. In addition, cornices may weaken and break as temperatures rise.

Bulletin data: Norwegian Water Resources and Energy Directorate (NVE), varsom.no (NLOD)

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