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Journal Article

Citation

Jensen D, Reager JT, Zajic B, Rousseau N, Rodell M, Hinkley E. Environ. Res. Lett. 2018; 13(1): e9853.

Affiliation

National Remote Sensing Program Manager, USDA Forest Service, 1400 Independence Ave., SW, Washington, DC 20250, USA.

Copyright

(Copyright © 2018, Institute of Physics (IOP) Publishing)

DOI

10.1088/1748-9326/aa9853

PMID

29479372

PMCID

PMC5822439

Abstract

It is generally accepted that year-to-year variability in moisture conditions and drought are linked with increased wildfire occurrence. However, quantifying the sensitivity of wildfire to surface moisture state at seasonal lead-times has been challenging due to the absence of a long soil moisture record with the appropriate coverage and spatial resolution for continental-scale analysis. Here we apply model simulations of surface soil moisture that numerically assimilate observations from NASA's Gravity Recovery and Climate Experiment (GRACE) mission with the US Forest Service's historical Fire-Occurrence Database over the contiguous United States. We quantify the relationships between pre-fire-season soil moisture and subsequent-year wildfire occurrence by land-cover type and produce annual probable wildfire occurrence and burned area maps at 0.25-degree resolution. Cross-validated results generally indicate a higher occurrence of smaller fires when months preceding fire season are wet, while larger fires are more frequent when soils are dry. This result is consistent with the concept of increased fuel accumulation under wet conditions in the pre-season. These results demonstrate the fundamental strength of the relationship between soil moisture and fire activity at long lead-times and are indicative of that relationship's utility for the future development of national-scale predictive capability.


Language: en

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