Back to Search Start Over

Autumn precipitation: the competition with Santa Ana winds in determining fire outcomes in southern California.

Authors :
Cayan, Daniel R.
DeHaan, Laurel L.
Gershunov, Alexander
Guzman-Morales, Janin
Keeley, Jon E.
Mumford, Joshua
Syphard, Alexandra D.
Source :
International Journal of Wildland Fire; 2022, Vol. 31 Issue 11, p1056-1067, 12p
Publication Year :
2022

Abstract

Background: California's South Coast has experienced peak burned area in autumn. Following typically dry, warm summers, precipitation events and Santa Ana winds (SAWs) each occur with increasing frequency from autumn to winter and may affect fire outcomes. Aims: We investigate historical records to understand how these counteracting influences have affected fires. Methods: We defined autumn precipitation onset as the first 3 days when precipitation ≥8.5 mm, and assessed how onset timing and SAWs were associated with frequency of ≥100 ha fires and area burned during 1948–2018. Key results: Timing of autumn precipitation onset had negligible trend but varied considerably from year to year. A total of 90% of area burned in autumn through winter occurred from fires started before onset. Early onset autumns experienced considerably fewer fires and area burned than late onset autumns. SAWs were involved in many of the large fires before onset and nearly all of the lesser number after onset. Conclusions: Risk of large fires is reduced after autumn precipitation onset, but may resurge during SAWs, which provide high risk weather required to generate a large fire. Implications: During autumn before onset, and particularly during late onset autumns, high levels of preparation and vigilance are needed to avoid great fire impacts. Autumn precipitation and Santa Ana winds are opposing determinants of fire outcomes in California's South Coast region. Most of the area burned in autumn through early winter during 1948–2018 occurred from fires started before the onset of precipitation, defined as the first autumn event with 8.5 mm or greater precipitation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10498001
Volume :
31
Issue :
11
Database :
Complementary Index
Journal :
International Journal of Wildland Fire
Publication Type :
Academic Journal
Accession number :
160283833
Full Text :
https://doi.org/10.1071/WF22065