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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 The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.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 64

McCarter
The Lanscape Management System (LMS) is an evolving Microsoft Windows™ application that integrates forest inventory information, spatial information, growth models, computer visualization software, and analysis software into a landscape-level analysis tool. This paper presents…
Year: 1997
Type: Document
Source: TTRS

Stage
The Forest Vegetation Simulator (FVS), coupled with a new key to structural classes, provided an empirical link between the Columbia River Basin SUccessional Model (CRBSUM) and the real world. The essence of CRBSUM is a set of residence times and disturbance probabilities for…
Year: 1997
Type: Document
Source: TTRS

Berry, Buckley, McGarigal
The ARC/INFO system is a powerful GIS that is widely used by natural resource organizations. FRAGSTATS is an extensively used program that derives a comprehensive set of useful landscape metrics. The Forest Vegetation Simulator (FVS) is a forest growth and yield model used…
Year: 1997
Type: Document
Source: TTRS

Wang, Hamann, Cumming
Studying changes to the shape, size, and arrangement of patches of forest habitat remains a challenge in the field of landscape ecology. A major issue is that most landscape pattern metrics measure both the amount of habitat as well as habitat configuration. To obtain…
Year: 2012
Type: Document
Source: TTRS

Document with links to FSPro analysis documents related to Alaska from the 2012 Fire Modeling Workshop
Year: 2012
Type: Document
Source: FRAMES

Bergeron, Leduc, Li
To evaluate the respective contributions of habitat, fire regime and colonization-extinction procsses to the distribution of northern Pinus species, we investigated the distribution of P. banksiana (jack pine), P. resinosa (red pine) and P. strobus (white pine) on 117 islands of…
Year: 1997
Type: Document
Source: TTRS

Karafyllidis, Thanailakis
The model presented, for the first time, in this paper can predict the spreading of fire in both homogeneous and in homogeneous forests and can easily incorporate weather conditions and land topography. An algorithm has been constructed based on the proposed model and was used…
Year: 1997
Type: Document
Source: TTRS

Timoney, Peterson, Wein
In this study we compare and contrast vegetation development following natural and logging disturbances in a major boreal river valley. Permanent sample plots and releves were established and sampled for vegetation and landscape attributes in June and July of 1993 and 1994 in…
Year: 1997
Type: Document
Source: TTRS

Fujioka
A computerized fire weather model coupled with a synoptic model is a powerful means of describing the weather part of the fire environment.
Year: 1997
Type: Document
Source: TTRS

Graham, Holle, Lopez
Present lightning detection networks provide fire managers in the United States with information about potential lightning-caused wildfires. Lightning location information can also be used for other purposes such as planning for prescribed natural fire.
Year: 1997
Type: Document
Source: TTRS

Leenhouts
Wildland fire has shaped the conterminous United States for millennia. During the presettlement era between 4.5 and 11 percent of the landscape burned annually. Today approximately 0.8 percent burns annually. Fire emission estimates from presettlement wildland fire and present…
Year: 1997
Type: Document
Source: TTRS

Bunnell
Natural processes are clearly provided for in the Wilderness Act of 1964. This Act defines wilderness as a large land area which is primarily affected by the forces of nature. In addition, the defined purpose of the Act was to assure these lands were to be preserved and…
Year: 1997
Type: Document
Source: TTRS

Li, Ter-Mikaelian, Perera
Potential temporal fire disturbance patterns on a forest landscape were investigated using a fire regime model with four different fire probability functions: (I)forest age-independent; (2) hyperbolic increase with forest age; (3) sigmoid increase with age; and (4) linear…
Year: 1997
Type: Document
Source: TTRS

Bergeron, Harvey
We present a method in which fundamental knowledge of natural ecosystem dynamics of the southern boreal forest may be used as a basis for a new silvicultural approach aimed at maintaining biodiversity and long-term ecosystem productivity under management. The natural disturbance…
Year: 1997
Type: Document
Source: TTRS

Tirmenstein, Long, Heward
The Wildland Fire Assessment Tool (WFAT) is a custom ArcMap toolbar that provides an interface between ArcGIS desktop software, FlamMap3 algorithms (Finney 2006) and First Order Fire Effects Model (FOFEM) algorithms (Reinhardt 2003) to produce predicted fire behavior and fire…
Year: 2012
Type: Document
Source: FRAMES

This report evaluates 24 computer-aided decision support systems (DSS) that can support management decision-making in forest ecosystems. It compares the scope of each system, spatial capabilities, computational methods, development status, input and output requirements, user…
Year: 1997
Type: Document
Source: FRAMES

Fleming
Description not entered.
Year: 1997
Type: Document
Source: FRAMES

Potter
Wildland fire represents an important ecological mechanism in many forest ecosystems. It shapes the distributions of species, maintains the structure and function of fire-prone communities, and is a significant evolutionary force (Bond and Keeley 2005). At the same time, fire…
Year: 2012
Type: Document
Source: FRAMES

Potter
Wildland fire represents an important ecological mechanism in many forest ecosystems. It shapes the distributions of species, maintains the structure and function of fire-prone communities, and is a significant evolutionary force (Bond and Keeley 2005). At the same time, fire…
Year: 2012
Type: Document
Source: FRAMES

Finco, Quayle, Zhang, Lecker, Megown, Brewer
The Monitoring Trends in Burn Severity (MTBS) project is mapping the extent, size, and severity of all large fires greater than 1,000 acres in the west and 500 acres in the east over the conterminous United States (CONUS), Alaska, and Hawaii. In 2012 the project reached a…
Year: 2012
Type: Document
Source: FRAMES

Toney, Peterson, Long, Parsons, Cohn
The LANDFIRE program is developing 2010 maps of vegetation and wildland fuel attributes for the United States at 30-meter resolution. Currently available vegetation layers include ca. 2001 and 2008 forest canopy cover and canopy height derived from Landsat and Forest Inventory…
Year: 2012
Type: Document
Source: FRAMES

The Alaska Fire and Fuels Research Map was created in 2006 under FIREHOUSE (The Northwest and Alaska Fire Research Clearinghouse), a Joint Fire Science Program funded project (06-3-1-26). This database was initially populated from National Park Service fire effects study plots…
Year: 2012
Type: Document
Source: FRAMES

Chen, Wulder, White, Hilker, Coops
There is a paucity of detailed and timely forest inventory information available for Canada's large, remote northern boreal forests. The Canadian National Forest Inventory program has derived a limited set of attributes from a Landsat-based land cover product representing circa…
Year: 2012
Type: Document
Source: FRAMES

Frederick
The National Infrared Operations (NIROPS) program, headquartered at the National Interagency Fire Center in Boise, ID, is the primary provider of operational infrared (IR) imaging services for wildland fire management across the country. The national IR program combines advanced…
Year: 2012
Type: Document
Source: FRAMES

Barrett, Rocha, van de Weg, Shaver
With anticipated climate change, tundra fires are expected to occur more frequently in the future, but data on the long-term effects of fire on tundra vegetation composition are scarce. This study addresses changes in vegetation structure that have persisted for 17 years after a…
Year: 2012
Type: Document
Source: FRAMES