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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 The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.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 1 - 25 of 123

Hessburg
We have all seen the news - hotter summers, and bigger, badder wildfires. What's going on? How did we get here? Paul tells a fast-paced story of western US forests - unintentionally yet massively changed by a century of management. He relates how these changes, coupled with a…
Year: 2017
Type: Media
Source: FRAMES

Johnston, Woodward
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Drew, Samuel, Lukiwski, Willman
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Payette, Gagnon
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Van Lear, Waldrop
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Salazar
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Andrews, Burgan
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Brown
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Racine, Dennis, Patterson
The location, cause, frequency, size, rotation times, and seasonal timing of tundra fires in the Noatak River watershed of northwestern Alaska were determined from Bureau of Land Management fire records for 1956-83 and satellite (LANDSAT) 1:1 000 000 scale, black and white, band…
Year: 1985
Type: Document
Source: TTRS

Foster
(1) The pattern of post-fire vegetation development in Picea mariana (black spruce)-Pleurozium forests in south-eastern Labrador, Canada, is evaluated using palaeoecological methods and vegetation analysis of extant stands.(2) Macrofossil analysis of mor humus profiles in mature…
Year: 1985
Type: Document
Source: TTRS

Johansen
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Koonce, Roth
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Reifsnyder, Berry
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Sandberg
[no description entered]
Year: 1985
Type: Document
Source: TTRS

McMahon, Clements, Bush, Neary, Taylor
Demands for firewood are high and rising, and pesticide-treated trees are often an obvious source. Worning intervals/ground fires/Understory vegetation/litter/sampling/age classes/statistical analysis/population ecology/fire suppression © by the Society of American Foresters.…
Year: 1985
Type: Document
Source: TTRS

Van Wagner
[no description entered]
Year: 1985
Type: Document
Source: TTRS

Anderson
The dynamics of the fine forest fuel's response to moisture changes have not been fully recognized. Fire behavior systems now in use consider all fine fuels to have a 1-hour response time. Experimental results of testing a wide range of fine fuels show the change in moisture…
Year: 1985
Type: Document
Source: TTRS

Finney
Why is calibrating the fire behavior models important to predicting fire behavior - an interview with Mark Finney a Research Scientist at the RMRS Fire Sciences Lab. Mark highlight's considerations an analyst should make when validating fire behavior models to fire behavior.
Year: 2017
Type: Media
Source: FRAMES

Bushey
Rate of fire spread and flame length were observed on six prescribed headfires in the sagebrush (Artemisia)/bunchgrass vegetation type in western North America. Spread rate and flame length predictions from the fire behavior prediction system BEHAVE reasonably matched mean…
Year: 1985
Type: Document
Source: TTRS

Ottmar, Brown, French, Larkin
This document presents the study plan for the Fire and Smoke Model Evaluation Experiment (FASMEE). FASMEE is a large-scale interagency effort to (1) identify the critical measurements necessary to improve operational wildland fire and smoke prediction systems, (2) collect…
Year: 2017
Type: Document
Source: FRAMES

Lopes, Ribeiro, Viegas, Raposo
The present work addresses the problem of how wind should be taken into account in fire spread simulations. The study was based on the software system FireStation, which incorporates a surface fire spread model and a solver for the fluid flow (Navier-Stokes) equations. The…
Year: 2017
Type: Document
Source: TTRS

Gould, Sullivan, Hurley, Koul
Different methods can be used to measure the time and distance of travel of a fire and thus its speed. The selection of a particular method will depend on the experimental objectives, design, scale, location (in the laboratory or field), required accuracy and resources available…
Year: 2017
Type: Document
Source: TTRS

Gharun, Possell, Bell, Adams
Fire plays a critical role in biodiversity, carbon balance, soil erosion, and nutrient and hydrological cycles. While empirical evidence shows that fuel reduction burning can reduce the incidence, severity and extent of unplanned fires in Australia and elsewhere, the integration…
Year: 2017
Type: Document
Source: TTRS

Balch, Bradley, Abatzoglou, Nagy, Fusco, Mahood
The economic and ecological costs of wildfire in the United States have risen substantially in recent decades. Although climate change has likely enabled a portion of the increase in wildfire activity, the direct role of people in increasing wildfire activity has been largely…
Year: 2017
Type: Document
Source: TTRS

Urgenson, Ryan, Halpern, Bakker, Belote, Franklin, Haugo, Nelson, Waltz
Collaborative approaches to natural resource management are becoming increasingly common on public lands. Negotiating a shared vision for desired conditions is a fundamental task of collaboration and serves as a foundation for developing management objectives and monitoring…
Year: 2017
Type: Document
Source: TTRS