DiscoverScience (Audio)From Uncertainty to Early Warning: Advancing Sundowner Wind Science to Reduce Wildfire Risk
From Uncertainty to Early Warning: Advancing Sundowner Wind Science to Reduce Wildfire Risk

From Uncertainty to Early Warning: Advancing Sundowner Wind Science to Reduce Wildfire Risk

Update: 2025-09-19
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Coastal Santa Barbara is considered one of the most idyllic locations on the North American West Coast, but its beauty is frequently disrupted by fast-spreading, wind-driven wildfires. The east-west oriented Santa Ynez Mountains (SYM), rising abruptly over 1,000 meters from the coastal plain, create a distinct climatic environment by separating the cool, stable air over the Pacific from the much drier atmosphere of the Santa Ynez Valley. This topography leads to unique regional wind patterns, including the Sundowner winds, which occur along the southern slopes of the SYM. Leila Carvalho, Professor of Geography and a researcher at the Earth Research Institute at UC Santa Barbara, studies regional and large-scale climate variability and change, including monsoon dynamics, tropical-extratropical interactions, extreme precipitation and temperature events, mountain weather and climate, and regional modeling. Series: "GRIT Talks" [Science] [Show ID: 41039]
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From Uncertainty to Early Warning: Advancing Sundowner Wind Science to Reduce Wildfire Risk

From Uncertainty to Early Warning: Advancing Sundowner Wind Science to Reduce Wildfire Risk

UCTV: UC Santa Barbara