Recalibrating the Canadian Fire Weather Index for Southern California’s Downslope Wind-Driven Fire Regimes
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Abstract
Wildfire danger in Southern California is strongly influenced by episodic offshore wind events and extreme atmospheric dryness, conditions that are not fully captured by the standard Canadian Fire Weather Index (CFWI), which was developed for boreal forest environments using noon-based meteorological inputs and has been widely applied by various climatic and ecological regimes. This study presents a regionally calibrated adaptation of the CFWI to improve representation of wind-driven fire danger in San Diego County’s chaparral-dominated landscapes. Using high-resolution observation-based meteorological data, the CFWI was recalibrated by replacing noon observations with daily maximum temperature and wind speed, and daily minimum relative humidity, applying a region-specific day-length factor, and introducing conditional modifiers based on wind direction and humidity thresholds. Evaluation over the 2000–09 period, including extreme fire years such as 2003 and 2007, shows that the recalibrated CFWI substantially improves the ability to distinguish large wildfire days, particularly during peak Santa Ana wind seasons. A conditional Initial Spread Index adjustment based on easterly (negative zonal) winds and low relative humidity improves model performance, particularly during autumn and winter. Results also highlight strong seasonal and spatial variability, supporting a seasonally adaptive calibration strategy. This work demonstrates that physically motivated regional recalibration improves the use of the CFWI to wind-dominated fire regimes, providing a more reliable tool for operational fire danger assessment and wildfire preparedness in locations prone to extreme wind-driven wildfires.
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