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The Alaska Reference Database originated as the standalone Alaska Fire Effects Reference Database, a ProCite reference database maintained by former BLM-Alaska Fire Service Fire Ecologist Randi Jandt. It was expanded under a Joint Fire Science Program grant for the FIREHouse project (The Northwest and Alaska Fire Research Clearinghouse). It is now maintained by the Alaska Fire Science Consortium and FRAMES, and is hosted through the FRAMES Resource Catalog. The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.

Displaying 76 - 100 of 4502

Yoo, Song
This paper proposes a new method for rapid prediction of wildfire spread, which employs computational wildfire simulations by FARSITE and assimilates the simulation results with actual observation data by means of an ensemble Kalman filter. To expedite data assimilation, the…
Year: 2023
Type: Document
Source: FRAMES

Since 1998, the Joint Fire Science Program (JFSP) has provided funding and science delivery for scientific studies associated with managing wildland fire, fuels, and fire-impacted ecosystems to respond to emerging needs of managers, practitioners, and policymakers from local to…
Year: 2022
Type: Document
Source: FRAMES

Neger, Rosas-Paz
Although humans have interacted with wildfires for millennia, a science-based approach to fire management has evolved in recent decades. This paper reviews the development of fire-management research, focusing on publications that use this term in their title, abstract, or…
Year: 2022
Type: Document
Source: FRAMES

Cruz, Alexander
[From the Introduction] In the October-December 2019 issue of WILDFIRE, we described a recently developed rule of thumb for estimating a wildfire’s forward spread rate when burning conditions are severe, namely when wind speeds are high and fuels are critically dry, and the time…
Year: 2021
Type: Document
Source: FRAMES

Hedayati, Gorham
IBHS test chamber is a unique facility to study the effects of wind on fire. The test chamber area is equal to four basketball courts which allows researchers to perform large scale wind and fire tests. The test chamber is equipped with 105 fans that can generate gusty wind…
Year: 2022
Type: Media
Source: FRAMES

Elhami-Khorasani
Destructive wildfires are now a real threat in regions across the country and beyond what was once considered as the fire season, examples of which are the 2016 Gatlinburg Fire in the Southeast and the 2021 Marshall Fire in late December. Existing wildfire risk assessment…
Year: 2022
Type: Media
Source: FRAMES

Alexander, Cruz
In 2019 we described the development of a rule of thumb for estimating a wildfire’s forward rate of spread in cases when burning conditions are severe (i.e., namely when wind speeds are high and fuels are critically dry) and the time available to prepare a more exacting…
Year: 2021
Type: Media
Source: FRAMES

Margolis, Guiterman
A recent collaboration by ~90 tree-ring and fire-scar scientists has resulted in the publication of the newly compiled North American Tree-Ring Fire-Scar Network (NAFSN), which contains 2,562 sites, > 37,000 fire-scarred trees, and covers large parts of North America. In this…
Year: 2022
Type: Media
Source: FRAMES

Loudermilk, O'Brien, Goodrick, Linn, Skowronski, Hiers
Background: The structure and function of fire-prone ecosystems are influenced by many interacting processes that develop over varying time scales. Fire creates both instantaneous and long-term changes in vegetation (defined as live, dead, and decomposing plant material) through…
Year: 2022
Type: Document
Source: FRAMES

Nguyen, Wei
Selecting the optimal locations and timing for prescribed burning is challenging when considering uncertainties in weather, fire behavior, and future fire suppression. In this study, we present a sample average approximation (SAA) based multistage stochastic mixed integer…
Year: 2022
Type: Document
Source: FRAMES

Burton, Cawson, Filkov, Penman
Fallen plant material such as leaves, needles and branches form litter beds which strongly influence fire ignition and spread. Traits of the dominant species influence litter flammability directly by determining how individual leaves burn and indirectly through the structure of…
Year: 2021
Type: Document
Source: FRAMES

Cruz, Alexander, Fernandes
The suggestion has been made within the wildland fire community that the rate of spread in the upper portion of the fire danger spectrum is largely independent of the physical fuel characteristics in certain forest ecosystem types. Our review and analysis of the relevant…
Year: 2022
Type: Document
Source: FRAMES

The annual national report of the Forest Health Monitoring (FHM) program of the Forest Service, U.S. Department of Agriculture, presents forest health status and trends from a national or multistate regional perspective using a variety of sources, introduces new techniques for…
Year: 2022
Type: Document
Source: FRAMES

Vaillant
This seminar is part of the USFS Missoula Fire Lab Seminar Series. The Interagency Fuels Treatment Decision Support System (IFTDSS) is a web-based application designed to make fuels treatment planning and analysis more efficient and effective. IFTDSS provides access to data and…
Year: 2020
Type: Media
Source: FRAMES

Potter
This seminar is part of the USFS Missoula Fire Lab Seminar Series. Some fires are big, but others are reach totally stunningly sizes, really “wow, that’s big.” What drives those fires to become so large, while other fires in seemingly similar conditions do not? I will present…
Year: 2020
Type: Media
Source: FRAMES

Yedinak
This seminar is part of the USFS Missoula Fire Lab Seminar Series. Wildland fires occupy the biosphere as both an ecological process essential for maintaining species diversity and a hazard to human lives, infrastructure and activities. Fire managers’ ability to anticipate fire…
Year: 2020
Type: Media
Source: FRAMES

Ramírez
This seminar is part of the USFS Missoula Fire Lab Seminar Series. Technosyva is a company of 50 professionals based in San Diego and in Leon, Spain. Since 1997 we focused on developing technology and applications for the wildland fire community, with a strong partnership with…
Year: 2021
Type: Media
Source: FRAMES

Moody
This seminar is part of the USFS Missoula Fire Lab Seminar Series. A microscale wildfire model (QES-Fire), which dynamically couples the fire front to microscale winds, was developed utilizing a simplified physics rate of spread (ROS) model, a kinematic plume-rise model and a…
Year: 2021
Type: Media
Source: FRAMES

Belenguer-Plomer, Tanase, Chuvieco, Bovolo
In this paper, we present an in-depth analysis of the use of convolutional neural networks (CNN), a deep learning method widely applied in remote sensing-based studies in recent years, for burned area (BA) mapping combining radar and optical datasets acquired by Sentinel-1 and…
Year: 2021
Type: Document
Source: FRAMES

Makowiecki
This seminar is part of the USFS Missoula Fire Lab Seminar Series. In-situ measurements of combustion systems are challenging due to high temperatures, rapidly varying spatial properties, and limited physical and optical access. In biomass combustion these challenges are further…
Year: 2021
Type: Media
Source: FRAMES

Grabinski, Smith
In 2019, the Shovel Creek Fire grew rapidly and threatened nearby neighborhoods north of Fairbanks. The fire was started by lighting on June 21. After 39 days of burning, and $25 million spent on suppression the fire was put out and no homes or lives were lost. The resulting…
Year: 2022
Type: Media
Source: FRAMES

Simpson, Archibald, Osborne
Grasses fuel most fires on Earth and strongly influence local fire behaviour through traits that determine how flammable they are. Therefore, grass communities that differ in their species and trait compositions give rise to significant spatial variation in savanna fire regimes…
Year: 2022
Type: Document
Source: FRAMES

Di Cristina, Gallagher, Skowronski, Simeoni, Rangwala, Im
Connecting the results from laboratory wildland fire experiments with in-situ field experiments under natural conditions remains an important challenge in wildland fire science, particularly because of differences in flow and boundary-layer conditions in the local atmosphere.…
Year: 2022
Type: Document
Source: FRAMES

Camera captures video and temperature as a high-intensity crown fire rolls through. From the International Crown Fire Modeling Experiments in the Northwest Territories.
Year: 2000
Type: Media
Source: FRAMES

An overview of the International Crown Fire Modeling Experiments in Canada's Northwest Territories.
Year: 1997
Type: Media
Source: FRAMES