DocumentCode
1304485
Title
Visualization of wildfire simulations
Author
McCormick, Patrick S. ; Anrens, J.P.
Author_Institution
Adv. Comput. Lab., Los Alamos Nat. Lab., NM, USA
Volume
18
Issue
2
fYear
1998
Firstpage
17
Lastpage
19
Abstract
The paper considers how Los Alamos researchers are partnering with Los Angeles County Fire Department, United States Forest Service, and Kennedy Space Center personnel for wildfire simulation studies. Fire behavior is highly dependent upon winds, temperatures and moisture. It is crucial to predict these weather parameters over the small regions where they directly affect a fire. Weather conditions in these small regions are driven by dynamic weather patterns such as cold fronts and high-pressure systems that develop over much larger geographic areas. The Regional Atmospheric Modeling System (RAMS), originally developed at Colorado State University, predicts these variable weather patterns. The RAMS model uses measurements from weather stations all over the United States to predict winds, temperatures, and moisture into the near future. To model the interactions between winds and fire, Higrad has been combined with a simple fire behavior model (Behave) from the US Forest Service. This combined modeling system (Higrad/Behave) is the first step in predicting the actual progress and heat release of a wildfire. Two fires have been simulated using this combined model
Keywords
data visualisation; digital simulation; environmental science computing; fires; geophysics computing; weather forecasting; Behave; Higrad; Kennedy Space Center; Los Angeles County Fire Department; RAMS; Regional Atmospheric Modeling System; United States Forest Service; cold fronts; fire behavior; fire visualization; heat release; high-pressure systems; modeling system; moisture; temperature; weather forecasting; wildfire simulations; wind; Atmospheric measurements; Atmospheric modeling; Fires; Moisture; Personnel; Predictive models; Temperature dependence; Visualization; Weather forecasting; Wind;
fLanguage
English
Journal_Title
Computer Graphics and Applications, IEEE
Publisher
ieee
ISSN
0272-1716
Type
jour
DOI
10.1109/38.656785
Filename
656785
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