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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 The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.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 93

Robichaud, Ashmun
A considerable investment in post-fire research over the past decade has improved our understanding of wildfire effects on soil, hydrology, erosion and erosion-mitigation treatment effectiveness. Using this new knowledge, we have developed several tools to assist land managers…
Year: 2013
Type: Document
Source: FRAMES, TTRS

de Groot, Goldammer, Keenan, Brady, Lynham, Justice, Csiszar, O'Loughlin
Wildland fires burn several hundred million hectares of vegetation every year, and increased fire activity has been reported in many global regions. Many of these fires have had serious negative impacts on human safety, health, regional economies, global climate change, and…
Year: 2006
Type: Document
Source: TTRS

Goulden, Winston, McMillan, Litvak, Read, Rocha, Elliot
We deployed a mesonet of year-round eddy covariance towers in boreal forest stands that last burned in ~1850, ~1930, 1964, 1981, 1989, 1998, and 2003 to understand how CO2 exchange and evapotranspiration change during secondary succession. We used MODIS imagery to establish that…
Year: 2006
Type: Document
Source: TTRS

Ali, Taylor, Inubushi
CO2 efflux from tropical peat swamp substrates was measured under three different land uses (selectively logged forest, recently burned and cleared forest, and agriculture) in Jambi Province, eastern Sumatra over a six-month period that incorporated parts of both the major wet…
Year: 2006
Type: Document
Source: TTRS

Lentile, Holden, Smith, Falkowski, Hudak, Morgan, Lewis, Gessler, Benson
Space and airborne sensors have been used to map area burned, assess characteristics of active fires, and characterize post-fire ecological effects. Confusion about fire intensity, fire severity, burn severity, and related terms can result in the potential misuse of the inferred…
Year: 2006
Type: Document
Source: TTRS

Manzello, Cleary, Shields, Yang
Firebrands or embers are produced as trees and structures burn in wildland-urban interface (WUI) fires. It is believed that firebrand showers created in WUI fires may ignite vegetation and mulch located near homes and structures. This, in turn, may lead to ignition of homes and…
Year: 2006
Type: Document
Source: TTRS

Parisien, Peters, Wang, Little, Bosch, Stocks
The present study characterized the spatial patterns of forest fires in 10 fire-dominated ecozones of Canada by using a database of mapped fires ³= 200 ha from 1980 to 1999 (n = 5533 fires). Spatial metrics were used individually to compare measures of fire size, shape (…
Year: 2006
Type: Document
Source: TTRS

Boucher, Arseneault, Sirois
[no description entered]
Year: 2006
Type: Document
Source: TTRS

Taylor, Alexander
[no description entered]
Year: 2006
Type: Document
Source: TTRS

Doolin, Sitar
From the text ... 'Low-power wireless sensor technology can be successfully deployed in wildland fires to collect local environmental conditions such as temperature, relative humidity, and barometric pressure.... Testing the system required collaboration with numerous…
Year: 2006
Type: Document
Source: TTRS

McKenzie, O'Neill, Larkin, Norheim
Visibility impairment from regional haze is a significant problem throughout the continental United States. A substantial portion of regional haze is produced by smoke from prescribed and wildland fires. Here we describe the integration of four simulation models, an array of GIS…
Year: 2006
Type: Document
Source: TTRS

Ohlson, Berry, Gray, Blackwell, Hawkes
This paper provides an example of the practical application of multi-attribute trade-off analysis (MATA) to wildfire management. The MATA approach supports more informed decision-making because it exposes important trade-offs among competing management objectives (requiring…
Year: 2006
Type: Document
Source: TTRS

Meyn, Feller
Forest fires in British Columbia often leave patches of unburned vegetation (forest remnants) within their perimeters. These remnants help to maintain biological diversity and structural complexity in stands. To be able to maintain patterns similar to those created by fire, we…
Year: 2006
Type: Document
Source: TTRS

Nadeau, Englefield
The Canadian Forest Fire Danger Rating System (CFFDRS) is used daily across Canada for evaluating forest fire danger. Fuel-type information is one of the inputs required by the models used in the CFFDRS. In this project, three fuel-type maps with a 25 m resolution were produced…
Year: 2006
Type: Document
Source: TTRS

Nelson, Connot, Peterson, Martin
The LANDFIRE Program provides comprehensive vegetation and fuel datasets for the entire United States. As with many large-scale ecological datasets, vegetation and landscape conditions must be updated periodically to account for disturbances, growth, and natural succession. The…
Year: 2013
Type: Document
Source: TTRS

Marcoux, Gergel, Daniels
Maps depicting historic fire regimes provide critical baselines for sustainable forest management and wildfire risk assessments. However, given our poor understanding of mixed-severity fire regimes, we asked if there may be considerable errors in fire-regime classification…
Year: 2013
Type: Document
Source: TTRS

Kolden, Rogan
Wildfires are historically infrequent in the arctic tundra, but are projected to increase with climate warming. Fire effects on tundra ecosystems are poorly understood and difficult to quantify in a remote region where a short growing season severely limits ground data…
Year: 2013
Type: Document
Source: TTRS

Bar-Massada, Stewart, Hammer, Mockrin, Radeloff
The wildland urban interface (WUI) delineates the areas where wildland fire hazard most directly impacts human communities and threatens lives and property, and where houses exert the strongest influence on the natural environment. Housing data are a major problem for WUI…
Year: 2013
Type: Document
Source: TTRS

Norman
Presented by Steve Norman, USFS Southern Research Station, and sponsored by the US Forest Service, Research and Development. The Landscape Science Webinar Series occurs monthly on a Tuesday at 1 pm Eastern providing a forum to communicate research findings, promote awareness of…
Year: 2013
Type: Media
Source: FRAMES

Olson
[no description entered]
Year: 1986
Type: Document
Source: TTRS

Thompson, Simard, Titman
[no description entered]
Year: 2006
Type: Document
Source: TTRS

Magagi, Berg, Goita, Belair, Jackson, Toth, Walker, McNairn, O'Neill, Moghaddam, Gherboudj, Colliander, Cosh, Belanger, Burgin, Fisher, Kim, Rousseau, Djamai, Shang, Merzouki
The Canadian Experiment for Soil Moisture in 2010 (CanEx-SM10) was carried out in Saskatchewan, Canada, from 31 May to 16 June, 2010. Its main objective was to contribute to Soil Moisture and Ocean Salinity (SMOS) mission validation and the prelaunch assessment of the proposed…
Year: 2013
Type: Document
Source: FRAMES

Hutter, Jones, Zeiler
The FRCC Mapping Tool quantifies the departure of vegetation conditions from a set of reference conditions representing the historical range of variation. The tool, which operates from an ArcGIS platform, derives several metrics of departure by comparing the composition of…
Year: 2013
Type: Document
Source: FRAMES

Smith, Tinkham, Roy, Boschetti, Kremens, Kumar, Sparks, Falkowski
Satellite based fire radiant energy retrievals are widely applied to assess biomass consumed and emissions at regional to global scales. A known potential source of uncertainty in biomass burning estimates arises from fuel moisture but this impact has not been quantified in…
Year: 2013
Type: Document
Source: FRAMES

The Fire Modeling Institute (FMI) brings the best available fire and fuel science and technology developed throughout the research community to bear in fire-related management issues. Although located within the Fire, Fuel, and Smoke Science Program of the U.S. Forest Service…
Year: 2013
Type: Document
Source: FRAMES