Has Santa Fe Really Been Windier This Summer?

Has Santa Fe Really Been Windier This Summer? I Dug Into the Data
If you've felt like the wind just won't quit in Santa Fe this summer, you're not alone.
I've noticed it myself, and I've heard from several people who say this summer seems much windier than what they're accustomed to—especially for a time of year when we normally associate our strongest and most persistent winds with spring.
One longtime Santa Fe resident recently asked whether our increasingly hot summers could be responsible and whether hot, dry and windy summers are becoming our new normal.
That question made me curious, so I decided to dig into the historical wind records.
What I found surprised me.
Summer 2026 hasn't actually been unusually windy when we look at average wind speed. But it has been exceptionally gusty.
And that distinction may explain why this summer has felt so windy.
What Data Did I Look At?
For this analysis, I used daily wind observations from the Santa Fe Regional Airport (SAF) available through the Iowa Environmental Mesonet's historical ASOS database.
The dataset includes daily:
- Average wind speed
- Maximum wind speed
- Maximum wind gust
The available records extend back to 1947, although there are gaps in the historical dataset. Most notably, the data from 1955 through 1972 are missing.
Wind speeds in the original dataset are reported in knots, so I converted them to miles per hour.
Because summer 2026 isn't over yet, I performed two different comparisons.
First, I calculated the average wind speed for every complete meteorological summer—June 1 through August 31—with sufficient data.
Then, to make a fair comparison with this summer, I compared June 1 through August 7 of 2026 with the exact same June 1–August 7 period in previous years.
August 8 was not included because a complete daily average was not yet available when the data were downloaded.
2026 Isn't One of Santa Fe's Windiest Summers
This was the first surprise.
From June 1 through August 7, 2026, the average wind speed at the Santa Fe Airport was about:
9.1 mph
Among the 62 years with complete data for that same period, 2026 ranked only 39th.
The historical average for those comparable years was approximately 9.5 mph.
In other words, the average wind speed this summer has actually been slightly below the historical average.
Here are the 10 windiest June 1–August 7 periods in the available record:
Windiest Summers Through August 7
- 1951 12.14 mph
- 1950 11.73 mph
- 1949 10.93 mph
- 1952 10.89 mph
- 1995 10.78 mph
- 1947 10.73 mph
- 1953 10.45 mph
- 1990 10.42 mph
- 1981 10.33 mph
- 1992 10.32 mph
2026: 9.11 mph — 39th of 62 comparable years
The dominance of the late 1940s and early 1950s is particularly interesting. Based on average wind speed, there is certainly nothing in these rankings suggesting that 2026 represents an unprecedented level of summertime wind.
But Then I Looked at the Wind Gusts
This is where the story changed dramatically.
Although the wind hasn't been blowing unusually hard on average, we've experienced an extraordinary number of strong wind gusts.
From June 1 through August 7, the Santa Fe Airport recorded:
- 57 days with gusts of at least 30 mph
- 29 days with gusts of at least 40 mph
- 11 days with gusts of at least 50 mph
- 2 days with gusts of at least 60 mph
- The highest gust was an impressive 72 mph on June 8.
- That means we've experienced a gust of at least 30 mph on about 84% of the days since June 1.
- A 40+ mph gust has occurred on about 43% of the days.
- And a 50+ mph gust has occurred on about 16% of the days.
That's a very different picture from the average wind speed.
2026 Ranks #1 for Gustiness in the Complete Modern Record
Historical gust observations aren't nearly as complete as average wind observations.
The gust field is largely unavailable in the earliest decades and inconsistent during portions of the later record. Because of that, it would be misleading to compare 2026's gust statistics all the way back to 1947.
Beginning in 2008, however, we have a much more consistent run of complete daily gust observations.
For every year with complete data, I calculated the average of each day's maximum wind gust from June 1 through August 7. Here is the top 10 list and the number of days winds exceeded, 40, 50, and 60 mph.
Gustiest Summers Through August 7
Year Avg. Gust >40mph >50mph >60mph
1. 2026 39.8 mph 29 11 2
2. 2023 37.2 mph 23 3 0
3. 2016 36.0 mph 17 4 0
4. 2011 35.7 mph 18 3 0
5. 2020 35.0 mph 16 1 0
6. 2021 34.9 mph 16 5 1
7. 2014 34.5 mph 15 1 0
8. 2024 34.3 mph 17 4 0
9. 2022 34.2 mph 18 5 0
10. 2008 33.8 mph 15 3 0
This is probably the statistic that best validates what so many people around Santa Fe have noticed.
2026 has been the gustiest summer through August 7 in the complete modern airport dataset.
And the 50+ mph gusts are particularly remarkable.
We've already had 11 days with gusts reaching at least 50 mph.
No other comparable year in this dataset had more than five through August 7.
So while the average wind hasn't been exceptional, the frequency of powerful gusts certainly has.
How Can Both Things Be True?
It sounds contradictory.
How can this summer rank only 39th for average wind speed but first for wind gusts?
The answer comes down to the difference between persistent wind and short bursts of very strong wind. Consider June 8. The strongest gust that day reached 72 mph, yet the average wind speed over the entire day was only about 8.2 mph.
On June 24, the airport gusted to 62 mph, while the day's average wind was only about 8.1 mph.
Those intense bursts don't last all day. Consequently, they don't necessarily increase the daily average very much.
But they're certainly noticeable if you're outside when they happen. That's probably an important reason this summer feels so windy. We're not necessarily experiencing relentless strong winds from morning through night. Instead, we're repeatedly experiencing periods when the wind suddenly becomes very strong.
What's Causing All These Gusts?
A large portion appears to be connected to thunderstorms and their outflow boundaries.
This summer has repeatedly featured a combination that is particularly effective at producing strong thunderstorm winds: Heat + dry air near the ground + moisture and thunderstorms above it.
When rain falls from a thunderstorm into very dry air, some of that rain evaporates before it ever reaches the ground. Evaporation cools the surrounding air. That cooler air becomes denser and can rapidly descend toward the surface. When this downdraft hits the ground, the air spreads outward—sometimes very quickly.
Think about pouring a bucket of water onto the floor. When the water hits, it races outward in every direction.
Thunderstorm air can behave similarly.
Except instead of water, we're talking about a surge of wind that can sometimes exceed 40, 50 or even 60 mph.
These events are commonly called downbursts or, on a smaller scale, microbursts.
The Thunderstorm Doesn't Have to Be Over Santa Fe
This is another important part of the story.
A thunderstorm doesn't necessarily have to occur directly over Santa Fe to make it windy here. Thunderstorms over the Jemez, Sangre de Cristo Mountains or elsewhere in northern and central New Mexico can send outflow boundaries traveling many miles away from the original storm.
So we can experience a sudden blast of strong wind even if we never receive meaningful rainfall. That has happened repeatedly this summer.
It's also one of the most frustrating parts of this pattern: we can get the wind from the thunderstorms without getting the beneficial rain.
The Strongest Days Support the Thunderstorm Connection
The strongest gusts recorded at the airport in 2026 through August 7 include:
- June 8 72 mph
- June 24 62 mph
- June 25 59 mph
- July 8 57 mph
- June 5 55 mph
- June 26 55 mph
- June 9 54 mph
- August 1 54 mph
- July 24 52 mph
- June 15 51 mph
When these dates were compared with National Weather Service Albuquerque forecast discussions, many corresponded with environments favorable for strong thunderstorm outflows and downbursts.
For example, on June 8—the day Santa Fe Airport recorded its 72-mph gust—the National Weather Service was discussing high-based showers and dry thunderstorms capable of producing damaging downburst winds.
On June 24, when the airport gusted to 62 mph, the atmosphere contained a deep layer of hot, dry air beneath thunderstorms. Forecast soundings showed an environment particularly favorable for powerful downdrafts and strong, erratic winds.
So the numbers and the meteorology line up remarkably well.
Not Every Windy Day Has Come From Thunderstorms
Thunderstorms aren't responsible for everything we've experienced.
We've also had periods of stronger southwest winds associated with larger weather systems, surface troughs and frontal passages. Those tend to produce a different type of windy day—one where the wind remains elevated for a longer period rather than suddenly exploding for a few minutes as an outflow boundary passes.
That's another reason looking only at the strongest gust isn't enough. By examining both the average wind and peak gust, we can distinguish between a genuinely windy day and a relatively calm day interrupted by an intense thunderstorm outflow.
Is the Heat Causing the Wind?
This was one of the original questions that prompted me to investigate all of this.
The answer is: not directly, but the heat and dryness can help create an environment favorable for powerful thunderstorm winds.
Simply making the temperature hotter doesn't automatically make the wind stronger. But very hot conditions can help produce a deep, dry and well-mixed layer of air near the surface.
Then introduce a thunderstorm.
Rain falling into that dry air evaporates, cooling the air and potentially accelerating the downdraft toward the surface.
So the heat and dryness we've experienced can be part of the recipe for strong downbursts.
But saying "climate change is making it windier" would be much too simplistic.
Does This Mean Hot, Dry and Windy Summers Are Our New Normal?
That's much harder to answer.
There is overwhelming evidence that our climate is warming, and higher temperatures can increase evaporation and contribute to greater drying of soils and vegetation.
But wind is considerably more complicated. Wind patterns depend on atmospheric pressure differences, the position of the monsoon high, the jet stream, frontal boundaries, thunderstorm activity and numerous other factors.
And our historical average-wind data certainly don't show that summer 2026 is experiencing unprecedented background winds. Remember: 2026 ranks only 39th out of 62 comparable years for average summer wind speed through August 7.
In fact, many of Santa Fe's windiest summers based on average wind occurred decades ago.
So I don't see evidence in these numbers to conclude that Santa Fe summers are simply becoming progressively windier because of climate change. The gustiness, however, is something worth watching.
So, Has It Really Been Windier This Summer?
After digging through thousands of daily observations, I'd phrase the answer a little differently:
It hasn't necessarily been windier. It's been gustier.
The average wind speed at the Santa Fe Airport this summer is actually slightly below the historical average. But the frequency and intensity of strong wind gusts have been exceptional in the complete modern airport record.
That distinction explains why the statistics can tell us the summer isn't particularly windy while many of us who live here feel like we're constantly dealing with wind.
And it turns out both observations can be correct. The wind isn't blowing unusually hard all the time.
But when it blows, it has frequently been very gusty.
And with several weeks of meteorological summer still remaining, ere 2026 ultimately finishes.
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