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 The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.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

Schroeder, Buck
[no description entered]
Year: 1970
Type: Document
Source: TTRS

Lee, Hellman
[no description entered]
Year: 1970
Type: Document
Source: TTRS

Lin, McCarty, Wang, Rogers, Morton, Collatz, Jin, Randerson
Fires in croplands, plantations, and rangelands contribute significantly to fire emissions in the United States, yet are often overshadowed by wildland fires in efforts to develop inventories or estimate responses to climate change. Here we quantified decadal trends, interannual…
Year: 2014
Type: Document
Source: TTRS

Barbero, Abatzoglou, Steel, Larkin
Very large-fires (VLFs) have widespread impacts on ecosystems, air quality, fire suppression resources, and in many regions account for a majority of total area burned. Empirical generalized linear models of the largest fires (>5000 ha) across the contiguous United States (US…
Year: 2014
Type: Document
Source: FRAMES, TTRS

Stephens, Burrows, Buyantuyev, Gray, Keane, Kubian, Liu, Seijo, Shu, Tolhurst, van Wagtendonk
Mega-fires are often defined according to their size and intensity but are more accurately described by their socioeconomic impacts. Three factors -- climate change, fire exclusion, and antecedent disturbance, collectively referred to as the 'mega-fire triangle' -- likely…
Year: 2014
Type: Document
Source: TTRS

Shulski, You, Krieger, Baule, Zhang, Zhang, Horowitz
Meteorological observations from more than 250 stations in the Beaufort and Chukchi Sea coastal, interior, and offshore regions were gathered and quality-controlled for the period 1979 through 2009. These stations represent many different observing networks that operate in the…
Year: 2014
Type: Document
Source: TTRS

Oliveira, Lopes, Baliga, Almeida, Viegas
Mathematical models and numerical solution procedures for predicting the trajectory, oscillation, possible rotation, and mass and size time-evolution of cylindrical wind-driven firebrands are described and discussed. Two test problems and the results, used for validating the…
Year: 2014
Type: Document
Source: FRAMES, TTRS

Morvan
The subject of this article concerns the unsteady effects (fire intensity, wind) upon the propagation and, more generally, the behavior of surface fires in open fields. The study focused on two sources of unsteadiness: the first one resulting from the regime of propagation (wind…
Year: 2014
Type: Document
Source: FRAMES

The following list of fire research topics and questions were generated by personnel from agencies and organizations within AWFCG during 2014 Fall Fire Review and through other solicitations. The topics were initially ranked by the AWFCG Fire Research, Development and…
Year: 2014
Type: Document
Source: FRAMES

Alden
The benefits and drawbacks of overwintering weather stations continues to be a topic of interest in the fire management community. This presentation looks at specific weather stations and how overwintering effects the Drought Code.
Year: 2014
Type: Media
Source: FRAMES

Barnes, Ziel
What factors may influence new fires burning into or being slowed by previous fire scars? How long can we consider fire scars a fuel barrier? More and more area in Alaska seems to be burning in close succession, or "repeat burns."
Year: 2014
Type: Media
Source: FRAMES

Ziel
A brief refresher of CFFDRS from the 3-day Summit, held October 28-30 in Fairbanks.
Year: 2014
Type: Media
Source: FRAMES

Rodriguez
One of the factors that shapes the Alaskan Boreal forest is the frequency in which previously burned areas re-burn, also known as the fire return interval. The Alaskan fire regime itself is subject to various climate influences one of which is temperature. Using geographic…
Year: 2014
Type: Document
Source: FRAMES

Van Wagner
From the text: 'In 1959 Williams published a method of calculating the fire season severity rating, an integrated measure of fire weather over the whole season. Being based solely on the daily fire danger index (1956 type), it could be used as an objective yardstick for…
Year: 1970
Type: Document
Source: TTRS

Connaughton
From the text: 'We have established that fire in the Intermountain West is a well recognized and time honored natural orce as part of our dynamic evolution. We have had no trouble agreeing that fire preceded man and, until very recently at least, has been a far more potent force…
Year: 1970
Type: Document
Source: TTRS

Turner
The accumulated hours of bright sunshine provide a simple index of fire season severity for the southern coastal area of British Columbia. This index, based on the period May 1 to August 31, is highly correlated with the annual acreage burned over the Vancouver Forest District.…
Year: 1970
Type: Document
Source: TTRS

Simard
Between 1931 and 1961 Canadian forest fire researchers gathered a vast quantity of data on weather, fuel moisture and test fire behavior. The original purpose of the data was primarily for the development of forest fire danger tables. The data was gathered at 11 field stations…
Year: 1970
Type: Document
Source: TTRS

Fosberg, Lancaster, Schroeder
Standard drying conditions in the laboratory have been related to the diurnal fluctuations of temperature and humidity to define a standard drying day for forest fuels. The mean equilibrium moisture content of a fuel on a standard drying day is slightly different from the…
Year: 1970
Type: Document
Source: TTRS

Byram, Martin
The fire whirlwind, an erratic and violent phenomenon associated with the behavior of intense fires, may generate velocities comparable to those reached in tornadoes. All the conditions essential to the formation of fire whirlwinds can be readily produced in the laboratory on a…
Year: 1970
Type: Document
Source: TTRS

Cargill
Fire perimeters can be quickly estimated using a 'rate of spread/elapsed time' table. This eliminates the need for plotting the fire acreage in order to determine the perimeter of the fire, and control force requirements based on fire perimeter can be determined quicker.
Year: 1970
Type: Document
Source: TTRS

Appleby
[no description entered]
Year: 1970
Type: Document
Source: TTRS

Wang, Parisien, Flannigan, Parks, Anderson, Little, Taylor
Given that they can burn for weeks or months, wildfires in temperate and boreal forests may become immense (eg., 10^0-10^4 km2). However, during the period within which a large fire is 'active', not all days experience weather that is conducive to fire spread; indeed most of the…
Year: 2014
Type: Document
Source: FRAMES

Ziel, Branson
This poster reviews current assessment products on the AICC Predictive Service Web page (like forecasts, lightning, and imagery) and examines some other tools and sources of data that Alaska fire managers might be able to use to improve fire weather forecasts. Presented at 2014…
Year: 2014
Type: Document
Source: FRAMES

Jandt
The slideshow for this project was presented at the 2014 Spring Alaska Fire Science Workshop.
Year: 2014
Type: Document
Source: FRAMES

Wolken
The Canadian Forest Fire Danger Rating System (CFFDRS) has been under development by the Canadian Forest Service since 1968, and comprises two major subsystems: the Canadian Forest Fire Weather Index (FWI) and the Canadian Forest Fire Behavior Prediction (FBP) Systems (Stocks et…
Year: 2014
Type: Document
Source: FRAMES