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However, the rarity of fire-weather conditions that occurred near populated regions, along with other societal factors such as limited evacuation protocols and limited wildfire preparedness in communities outside of the traditional wildland urban interface were key contributors to the widespread wildfire impacts. Fire weather conditions were well forecast several days prior to the fire. Reading a case study called The 2017 North Bay and Southern California Fires by Nicholas J.
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Finally, delayed onset of autumn precipitation allowed for critically low dead fuel moistures leading up to the wind events. In order to better understand the effects and causes of the fires I decided to do some research. Fuels were further preconditioned by the warmest summer and autumn on record in northern and southern California, respectively. Both fire events occurred following an exceptionally wet winter that was preceded by a severe four-year drought. By contrast, the southern California fires of December 2017 occurred during the longest Santa Ana wind event on record, resulting in the largest wildfire in California’s modern history. The North Bay fires of October 2017 occurred coincident with strong downslope winds, with a majority of burned area occurring within the first 12 hours of ignition. Both events featured key fire-weather metrics that were unprecedented in the observational record that followed a sequence of climatic conditions that enhanced fine fuel abundance and fuel availability. See current wildfires and wildfire perimeters in California using the Fire, Weather & Avalanche Center Wildfire Map. This study characterizes the meteorological and climatological factors that drove and enabled these wildfire events and quantifies their rarity over the observational record. Interactive real-time wildfire and forest fire map for California. Two extreme wind-driven wildfire events impacted California in late 2017, leading to 46 fatalities and thousands of structures lost.