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  "path": "/2026/06/wind-and-wildfire.html",
  "publishedAt": "2026-06-29T22:14:55.381Z",
  "site": "https://cliffmass.blogspot.com",
  "textContent": "When it comes to Northwest wildfires, many only consider precipitation and temperature.\n\n**But for most Northwest wildfires during the summer, another element is more important:_strong winds._**\n\nRecent grass and range fires in eastern Washington are prime examples of their \"windy\" origin.\n\nFor example, yesterday, there was a grass fire near Winthrop (see below). Strong winds were crucial.\n\n\n\n\nAnother grass/range fire (the Peterson fire) surged rapidly this week in Klickitat County (below). Strong winds again.\n\n\n\n\nA few weeks ago, large range fires (e.g., Juniper Dune, Tule Rd) were also forced by strong winds.\n\nIn a map of recent eastern Washington wildfires, virtually all were associated with strong winds (graphic courtesy of the Washington State Department of Ecology).\n\n\nMore than climate change warming, **strong winds are the essential ingredient for the large grass/range fires in the region.**\n\n\n\n\nIn fact, cool/wet spring weather can worsen wildfires in our region, since wet/cool springs enhance the amount of vegetation, which inevitably dries out during our typically arid summers. **That means more fuel.**\n\nThis week was a great example of strong winds, associated with cooler temperatures, leading to rapidly growing range/grass fires.\n\nConsider the winds at Ellensburg from June 22 to today (below). Sustained winds are shown in blue and gusts with black dots.\n\n**A large acceleration of the winds started on June 26, with some gusts reaching over 50 mph!**\n\nAs the winds increased, temperatures greatly COOLED at this location (see below).\n\nWant to be impressed with how strong the winds have been this week, east of the Cascade crest?\n\nBelow are the maximum gusts yesterday (Sunday) over eastern Washington.\n\nWow. Many exceed 50 mph, and some reach over 60 mph.\n\n\n\n\n**Why are there strong, fire-supporting winds when temperatures cool?**\n\n\n\n\nWhen cool air moves into the region from the west, it causes pressure to rise west of the crest, since cold air is denser and heavier. That causes low-level pressure to rise. Even if some cool air gets over the Cascades, the depth of the cool air is greater west of the crest, allowing the pressure to rise more to the west.\n\n\n\n\nTo illustrate, there is a sea level pressure analysis (solid lines), sustained surface winds (wind barbs), and low-level temperatures (color shading_ at 5 PM Wednesday. Cooler temperatures to the west and a strong pressure difference over the Cascades.\n\n\n\n\n\n\n\nA day later, eastern Washington had cooled, and much stronger winds had spread over the Inland Empire.\n\n\n\n\n\n\n\nThis weekend, temperatures will warm, and the winds along the eastern slopes of the Cascades should weaken.\n\n\n",
  "title": "Wind and Wildfire",
  "updatedAt": "2026-06-29T22:14:55.381Z"
}