The bitch is back and skiers across the northern half of the western United States have a lot to celebrate.
Related:Ā 2018 Winter Weather Forecast | Long Range Prediction From NOAA
Last time La NiƱa conditions persisted through the winter, ski areas across the continental US saw big time snowfall. That 2010/2011 ski season saw Jackson Hole with over 600″+ (*they stopped recording when the ski area closed in early April), Squaw with 810″, and Mt Baker with a ridiculous 857″. Needless to say, skiers and snowboarders are stoked on the upcoming season.
“Thereās about a 65-75% chance that La NiƱa conditions will continue at least through the winter.” – NOAA Blogger, Emily Becker
Included below is a full writeup by NOAA blogger and contract scientist, Emily Becker. The blog post is extremely insightful as to the mechanics and outcomes of this potential La Niña event.
Full ENSO Blog Post:
Well, itās November, and the CPC/IRI ENSO forecast is declaring the presence of La NiƱa conditions! I could just link to my November 2016 post and head home for the day⦠but that would be no fun! Thereās about a 65-75% chance that La NiƱa conditions will continue at least through the winter. As we head into our fifth ādouble dipā La NiƱa (an unofficial term for when neutral conditions briefly prevail in between La NiƱa winters) in the historical record, letās dig into what we talk about when we talk about La NiƱa.

A quick flashback
If you recall, last month there were several signs of the presence of La NiƱa conditions. East-central tropical Pacific sea surface temperatures were cooler than the long-term average, accompanied by signs of a La NiƱa-like atmospheric response (more clouds and rain over Indonesia, less over the central Pacific).
Sea surface temperatures in the NiƱo3.4 region during September came in at about 0.5°C cooler than the long-term average, the first step in our La NiƱa conditions decision tree. However, the sea surface temperature was showing some volatility, and we just werenāt confident enough in the second step of the flowchartāthat the cooler sea surface would persist for several seasonsāto be sure that La NiƱaās seasonal pattern had locked in.

Whatās different this month?
In October, despite an active Madden-Julian Oscillation moving through the western Pacific (more on that in a minute), La Niña conditions dominated. Stepping through our flowchart, the sea surface temperature in the Niño3.4 region again averaged about 0.5°C cooler than average (check). Most of the computer models forecast that it will remain in weak La Niña territory (between 0.5°C and 1.0°C below average) through the spring (check).
Another factor bolstering forecastersā confidence that La NiƱa will remain in place through the fall and winter 2017/18 is the substantial quantity of cooler-than-average waters below the tropical ocean surface. This will provide a source of cooler waters to the surface over the next few months.

(Still not quite sure what you’re looking at? Read more about Hovmoller diagrams.) NOAA Climate.gov image, based on data provided by the Climate Prediction Center.
Finally, the signs of an atmospheric response I described above continued to be present during October (check). In addition to the clouds and rain pattern, the upper-level winds were stronger than average, another sign of a strengthened Walker Circulation. Also, the Southern Oscillation Index was positive, also indicating a stronger-than-average Walker Circulation. Add it all together, and you get⦠La Niña!
You promised me an MJO!
Indeed I did. The Madden-Julian Oscillation operates on subseasonal timescales, meaning on the order of weeks or months. The MJO is essentially an area of enhanced convection, storms and clouds that moves eastward along the equator, and can circle the globe in around 4-8 weeks. ENSO (the whole El NiƱo/La NiƱa system), on the other hand, is a seasonal, stationary pattern, lasting for at least several months in a row.
The MJO can move through the tropical Pacific and temporarily change conditions, including the winds near the surface.

The near-surface winds in the tropics, called the trade winds, have a close relationship to the surface temperature of the ocean. The trades normally blow from east to west, helping to cool the surface and keep warmer water āpiled upā toward Indonesia. If these winds relax, the surface waters in the central and eastern Pacific can warm up. This is a critical feedback mechanism for ENSO.
During La NiƱa, the trade winds are stronger than average, keeping the surface waters cooler (vice versa during El NiƱo). If the MJO is active, it can temporarily change the wind patterns. This past month, the MJO was active and moved through from the Indian Ocean into the western hemisphere, weakening the surface winds. But despite the winds temporarily weakening due to the MJO, the ocean remained cool. This leads forecasters to believe that La NiƱa conditions are in place and we can now see the forest for the trees.
This winterās La NiƱa, although expected to remain weak, is likely to have some effect on North American weather and climate this winter. Be sure to check out Mikeās recent post for details on NOAAās 2017/18 Winter Outlook, and stay tuned to the ENSO Blog for further updates on the great La NiƱa of 2017/18.
Find the entire post here:Ā November 2017 La NiƱa update – Sheās back!

