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Fire Weather Index Historical Trends and Projections over CONUS

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There has been evidence of increasing fire activity in the United States since approximately the 1980s, now estimated to cause tens to hundreds of billions of dollars of damage per year. Weather is one of the key drivers of fire activity, with hot, dry, and windy weather commonly associated with high-risk conditions. We are still, however, developing an understanding of how these weather variables have contributed to historical trends in fire weather and whether these trends will continue.

In this work we investigate the impact of declining humidity in arid regions of the United States. We find that these drying trends have been the predominant contributor to historical increases in fire weather in the Western United States based on a common fire weather index, and that this signal is largely missing from downscaled weather projections based on Earth system models. Accordingly, a near-future (2020-2039) fire weather scenario derived from downscaled Earth System Model data produces little to no change in the frequency of extreme fire weather days across the Western United States. However, under a continued drying scenario, many regions in the West experience 20-70% increases in the annual occurrence of extreme fire weather days.

This data supports a manuscript under review at npj Natural Hazards. The manuscript contains additional details on the methods and data sources used to generate these trends and FWI changes. The manuscript will be linked when publicly available.

Citation Formats

TY - DATA AB - There has been evidence of increasing fire activity in the United States since approximately the 1980s, now estimated to cause tens to hundreds of billions of dollars of damage per year. Weather is one of the key drivers of fire activity, with hot, dry, and windy weather commonly associated with high-risk conditions. We are still, however, developing an understanding of how these weather variables have contributed to historical trends in fire weather and whether these trends will continue. In this work we investigate the impact of declining humidity in arid regions of the United States. We find that these drying trends have been the predominant contributor to historical increases in fire weather in the Western United States based on a common fire weather index, and that this signal is largely missing from downscaled weather projections based on Earth system models. Accordingly, a near-future (2020-2039) fire weather scenario derived from downscaled Earth System Model data produces little to no change in the frequency of extreme fire weather days across the Western United States. However, under a continued drying scenario, many regions in the West experience 20-70% increases in the annual occurrence of extreme fire weather days. This data supports a manuscript under review at npj Natural Hazards. The manuscript contains additional details on the methods and data sources used to generate these trends and FWI changes. The manuscript will be linked when publicly available. AU - Buster, Grant A2 - Zhang, Tianqi A3 - Mao, Jiafu A4 - Liu, Weichen A5 - Rahimi, Stefan DB - Open Energy Data Initiative (OEDI) DP - Open EI | National Laboratory of the Rockies DO - KW - energy KW - power KW - fire KW - wildfire KW - humidity KW - fire weather index KW - hazard KW - weather KW - CONUS KW - United States KW - Data KW - Processed Data KW - Earth System Model LA - English DA - 2026/08/04 PY - 2026 PB - National Laboratory of the Rockies (NLR) T1 - Fire Weather Index Historical Trends and Projections over CONUS UR - https://data.openei.org/submissions/8747 ER -
Export Citation to RIS
Buster, Grant, et al. Fire Weather Index Historical Trends and Projections over CONUS. National Laboratory of the Rockies (NLR), 4 August, 2026, Open Energy Data Initiative (OEDI). https://data.openei.org/submissions/8747.
Buster, G., Zhang, T., Mao, J., Liu, W., & Rahimi, S. (2026). Fire Weather Index Historical Trends and Projections over CONUS. [Data set]. Open Energy Data Initiative (OEDI). National Laboratory of the Rockies (NLR). https://data.openei.org/submissions/8747
Buster, Grant, Tianqi Zhang, Jiafu Mao, Weichen Liu, and Stefan Rahimi. Fire Weather Index Historical Trends and Projections over CONUS. National Laboratory of the Rockies (NLR), August, 4, 2026. Distributed by Open Energy Data Initiative (OEDI). https://data.openei.org/submissions/8747
@misc{OEDI_Dataset_8747, title = {Fire Weather Index Historical Trends and Projections over CONUS}, author = {Buster, Grant and Zhang, Tianqi and Mao, Jiafu and Liu, Weichen and Rahimi, Stefan}, abstractNote = {There has been evidence of increasing fire activity in the United States since approximately the 1980s, now estimated to cause tens to hundreds of billions of dollars of damage per year. Weather is one of the key drivers of fire activity, with hot, dry, and windy weather commonly associated with high-risk conditions. We are still, however, developing an understanding of how these weather variables have contributed to historical trends in fire weather and whether these trends will continue.

In this work we investigate the impact of declining humidity in arid regions of the United States. We find that these drying trends have been the predominant contributor to historical increases in fire weather in the Western United States based on a common fire weather index, and that this signal is largely missing from downscaled weather projections based on Earth system models. Accordingly, a near-future (2020-2039) fire weather scenario derived from downscaled Earth System Model data produces little to no change in the frequency of extreme fire weather days across the Western United States. However, under a continued drying scenario, many regions in the West experience 20-70\% increases in the annual occurrence of extreme fire weather days.

This data supports a manuscript under review at npj Natural Hazards. The manuscript contains additional details on the methods and data sources used to generate these trends and FWI changes. The manuscript will be linked when publicly available. }, url = {https://data.openei.org/submissions/8747}, year = {2026}, howpublished = {Open Energy Data Initiative (OEDI), National Laboratory of the Rockies (NLR), https://data.openei.org/submissions/8747}, note = {Accessed: 2026-10-09} }

Details

Data from Aug 4, 2026

Last updated Aug 11, 2026

Submitted Aug 5, 2026

Organization

National Laboratory of the Rockies (NLR)

Contact

Grant Buster

720.495.6245

Authors

Grant Buster

National Laboratory of the Rockies NLR

Tianqi Zhang

Oak Ridge National Laboratory

Jiafu Mao

Oak Ridge National Laboratory

Weichen Liu

University of Wyoming

Stefan Rahimi

University of Wyoming

Research Areas

DOE Project Details

Project Name Energy System Planning for Resilience during Severe Weather (ESPRS)

Project Number 12765

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