Avalanche Forecast
Regions: Olympics.
Mild weather and wet snow conditions will drive the avalanche danger Friday. Loose wet avalanches will be most dangerous in the near treeline band where they can grow large. Wind slabs above treeline will become more sensitive as rain pushes above treeline Thursday night and Friday morning.
Discussion
On Thursday, NWAC and NPS staff found roughly 4-12" of drier snow on top of the most recent rain crust. Cloud cover, a slower than forecast warm-up and increasing ridgetop winds during the afternoon kept the loose wet hazard at bay. Near and above treeline, very strong winds have created erratic loading patterns. Snow was still available for transport at these elevations as of Thursday afternoon.Â
Forecast Schedule
For the 2019-20 winter season, avalanche danger ratings will be issued for the Olympics every Friday through Sunday and during mid-week holidays. During the week, No Rating will be issued but forecasts will include expected conditions and relevant travel advice. If you are out in the Olympics, please share your backcountry observations with us.
Snowpack Discussion
Update: January 24th 2020Â (The regional synopsis is updated every Thursday @ 6 pm)
During the afternoon of January 23, 2020 one person was buried and killed by an avalanche that released from the roof of a home north of Blewett Pass near Highway 97. The elevation was approximately 1,700ft above sea level. She was found underneath 4 to 5ft of debris. She was discovered and excavated some time after the accident, where CPR was performed. Additional emergency response arrived within 15 minutes, but they were unable to revive her.
Our deepest condolences go out to the family and friends of the victim.
January to Remember
A parade of storms since the New Year began brought relentless precipitation, and impressive snowpack growth throughout the region. Areas along the west slopes of the Cascades have rarely gone more than 24-48hrs without precipitation. In the past three weeks, the Volcanoes and Passes received 20-28in of water equivalent, translating into incredible snowfall totals - Mt. Baker Ski Area reported 240in of new snow since January 1. The majority of NWAC weather station sites are reporting snow depths well over 120% of normal for this time of year. Ongoing precipitation and fluctuating snow levels have maintained elevated avalanche danger throughout the month, with avalanche warnings issued for nearly all forecast zones on 4 separate days (January 6, 7, 12, 23). Â
Snow depth imagery for the Northwest Region on January 23, 2020. Many areas in the Cascades and Olympics show well over 100 inches of snow on the ground. Image courtesy of NOHRSC Regional Snow Analysis.Â
Location
January 1-23 Precipitation (Water Equivalent)
Hurricane Ridge
14.79â
Mt Baker Ski Area
28.65â
Harts Pass
11.2â
Stevens Pass
20.26â
Leavenworth
4.01â
Snoqualmie Pass
25.43â
Paradise, Mt Rainier
24.13â
Mt Hood Meadows
22.34â
Table 1: Precipitation totals for select weather stations January 1-23, 2020. Huge numbers at Baker, Rainier, Hood, and the Passes and there is still another week left this month.
MLK Weekend and a Pattern of Rain on Dry Snow
After a prolonged cold period with arctic air and lowland snow, MLK weekend brought unseasonably warm temperatures and a rapid thaw. High snow levels and rain caused wet avalanche activity throughout the region January 18-19. A few very large natural avalanches occurred at upper elevations where all precipitation fell as snow. A cooling trend followed, creating a pronounced crust that is now buried in almost all forecast zones. Cold, dry snow January 21-22 was followed by a rapid warm-up and the most significant rain on snow event yet, causing avalanche warnings on January 23 for 5 of our 10 forecast zones.
The crown of a very large avalanche around 10,000ft on the Newton Headwall of Mt Hood which likely occurred during the storm late last week. 01/19/20 Photo: Kevin Kayl
The buried MLK crust is widespread throughout the region and a prominent marker in the snowpack. Crystal Backcountry 01/20/20 Photo Jeremy Allyn
One More Week To Go
January isnât over yet, and the long term forecast continues to show an active and wet weather pattern for the Northwest. The low-snow, drought-like conditions of the early season seem like a distant memory at this point. Weâve certainly made up for lost time in 2020, and this already impressive month looks to end with a bang.
Avalanche Problems
Wind Slabs
Winds distributed snow onto a variety of aspects prior to the incoming storm. Firmer, denser snow sits on top of the most recent rain crust. Depending on how much rain penetrates the upper snowpack before tapering off Friday afternoon, we could have a wet slab avalanche problem.
However the problem is defined, the treatment is the same - stay off of wind loaded slopes steeper than 35 degrees Friday. Wind slab avalanches may transition to wet loose avalanches on larger slopes, growing more powerful and dangerous. Do not travel on slopes with overhanging cornices. If traveling along ridgelines, give cornices a wide berth. Cornices will weaken further Friday and release naturally or break back further than you expect.
Release of a cohesive layer of snow (a slab) formed by the wind. Wind typically transports snow from the upwind sides of terrain features and deposits snow on the downwind side. Wind slabs are often smooth and rounded and sometimes sound hollow, and can range from soft to hard. Wind slabs that form over a persistent weak layer (surface hoar, depth hoar, or near-surface facets) may be termed Persistent Slabs or may develop into Persistent Slabs.
Wind Slabs form in specific areas, and are confined to lee and cross-loaded terrain features. They can be avoided by sticking to sheltered or wind-scoured areas..
Wind Slab avalanche. Winds blew from left to right. The area above the ridge has been scoured, and the snow drifted into a wind slab on the slope below.
Wind slabs can take up to a week to stabilize. They are confined to lee and cross-loaded terrain features and can be avoided by sticking to sheltered or wind scoured areas.
Aspects: All aspects.
Elevations: Alpine, Treeline.
Likelihood: Likely
Expected Size: 1 - 1
Loose Wet
Although loose wet is listed at all elevations, more snow is available for entrainment in the roughly 4000-5000’ range and it’s at these elevations that loose wet avalanches could become large and dangerous. Above treeline, strong winds will likely limit the loose wet potential.
If the sun makes an appearance Friday afternoon, pay attention to steep sunny slopes for increasing signs of instability. If you see roller balls, pinwheeling or natural loose wet avalanches, it’s time to avoid nearby slopes. Remember that loose wet avalanches are often surprisingly powerful and even small loose wet avalanches can be dangerous when combined with terrain traps like gullies, cliff bands, or open creeks.
Release of wet unconsolidated snow or slush. These avalanches typically occur within layers of wet snow near the surface of the snowpack, but they may quickly gouge into lower snowpack layers. Like Loose Dry avalanches, they start at a point and entrain snow as they move downhill, forming a fan-shaped avalanche. They generally move slowly, but can contain enough mass to cause significant damage to trees, cars or buildings. Other names for loose-wet avalanches include point-release avalanches or sluffs. Loose Wet avalanches can trigger slab avalanches that break into deeper snow layers.
Travel when the snow surface is colder and stronger. Plan your trips to avoid crossing on or under very steep slopes in the afternoon. Move to colder, shadier slopes once the snow surface turns slushly. Avoid steep, sunlit slopes above terrain traps, cliffs areas and long sustained steep pitches.
Several loose wet avalanches, and lots of pinwheels and roller balls.
Loose wet avalanches occur where water is running through the snowpack, and release at or below the trigger point. Avoid terrain traps such as cliffs, gullies, or tree wells. Exit avalanche terrain when you see pinwheels, roller balls, a slushy surface, or during rain-on-snow events.
Aspects: All aspects.
Elevations: All elevations.
Likelihood: Likely
Expected Size: 1 - 1