Climate change has likely contributed to the unprecedented wildfires that are raging through Southern California, research shows.
The Santa Ana winds are dry, powerful winds that blow down the mountains toward the Southern California coast. The region sees about 10 Santa Ana wind events a year on average, typically occurring from fall into January. When conditions are dry, as they are right now, these winds can become a severe fire hazard.
Many factors come together to cause massive, devastating fires. Two of those factors have especially clear links to climate change.
LA fires live updates: Follow our blog for the latest updates on the situation in California ... at the Climate Council. He recalls experiencing fires fuelled by the Santa Ana winds.
Climate change didn’t start the wildfires that are ravaging Los Angeles County this week. But the big swings in weather patterns that have accelerated over the past two decades serve as rocket fuel that intensifies the flames and spreads the devastation.
"What we have clear evidence of is that climate change is contributing to the warming ... RELATED: 5 fatalities confirmed as Southern California wildfires rage; 1,000+ structures destroyed The Santa Ana winds are driving these wildfires to spread even ...
The nature of the Santa Ana winds makes them perfectly suited to fueling blazes like the Palisades Fire, and climate change is increasing the risk
Human-caused climate ... the Southern California region saw in recent years. Other factors in the fires’ intensities included high but “not entirely unprecedented” Santa Ana winds ...
What's happening in Los Angeles is another reminder of what life will be like, even in Wisconsin, under a changing climate.
The California fires erupted amid extremely dry conditions. UCLA scientists say extreme heat linked to climate change was a factor in the fires' intensity.
Wildfires in Los Angeles are being driven by climate change, not political mismanagement, and California’s leaders have taken meaningful steps to address the issue, but the sheer scale of