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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 The database provides a listing of fire research publications relevant to Alaska and a venue for sharing unpublished agency reports and works in progress that are not normally found in the published literature.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 251

Watts, Samburova, Moosmüller
Studies of the emissions from wildland fires are important for understanding the role of these events in the production, transport, and fate of emitted gases and particulate matter, and, consequently, their impact on atmospheric and ecological processes, and on human health and…
Year: 2020
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

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

York, Bhatt, Gargulinski, Grabinski, Jain, Soja, Thoman, Ziel
Despite the low annual temperatures and short growing seasons that are characteristic of high northern latitudes (HNL), wildland fire is the dominant ecological disturbance within the region's boreal forest, the world's largest terrestrial biome. The boreal forest, also known as…
Year: 2020
Type: Document
Source: FRAMES

Runyon, Gray, Jenkins
High-elevation five-needle pine trees are a group of Pinus species in the subgenus Strobus that occur at the edges of plant growth near the alpine tree line. These species are ecologically very important and are also threatened by climate-driven insect outbreaks and an exotic…
Year: 2020
Type: Document
Source: FRAMES

Bendick, Hoylman
A topological data analysis (TDA) of 200,000 U.S. wildfires larger than 5 acres indicates that events with the largest final burned areas are associated with systematically low fuel moistures, low precipitation, and high vapor pressure deficits in the 30 days prior to the fire…
Year: 2020
Type: Document
Source: FRAMES

Bowman, Kolden, Abatzoglou, Johnston, Van der Werf, Flannigan
Vegetation fires are an essential component of the Earth system but can also cause substantial economic losses, severe air pollution, human mortality and environmental damage. Contemporary fire regimes are increasingly impacted by human activities and climate change, but, owing…
Year: 2020
Type: Document
Source: FRAMES

Walker, Rogers, Veraverbeke, Johnstone, Baltzer, Barrett, Bourgeau-Chavez, Day, de Groot, Dieleman, Goetz, Hoy, Jenkins, Kane, Parisien, Potter, Schuur, Turetsky, Whitman, Mack
Carbon (C) emissions from wildfires are a key terrestrial–atmosphere interaction that influences global atmospheric composition and climate. Positive feedbacks between climate warming and boreal wildfires are predicted based on top-down controls of fire weather and climate, but…
Year: 2020
Type: Document
Source: FRAMES

Horel, Crosman, Kochanski, Ziel
This study evaluated the ability of the High Resolution Rapid Refresh (HRRR) modeling system to forecast the characteristics of mesoscale atmospheric boundaries arising from thunderstorm outflows, gust fronts, and downburst winds (referred collectively as convective outflows)…
Year: 2020
Type: Document
Source: FRAMES

Harden, McAvoy, Yocom
Fire Ecology: It is everywhere around us, yet so many of us know so little. What is fire ecology? What makes fire behave the way it does? What is a fire ecologist and how does one get into that field? What are the coolest/most surprising/unique fire ecosystems on the planet?…
Year: 2020
Type: Media
Source: FRAMES

Urbanski, Lutes
In this short webinar, RMRS Research Physical Scientist Shawn Urbanski and Fire Ecologist Duncan Lutes will discuss the current state of the science on wildland fire smoke emissions, including pollutants present in smoke, methods for quantifying emission flux, existing datasets…
Year: 2020
Type: Media
Source: FRAMES

Noble
A presentation delivred to by Caroline Noble to the National Wildfire Coordinating Group (NWCG) Smoke Committee (SmoC) in November 2020. The presentation focuses on the current features of the Interagency Fuel Treatment Decision Support System (IFTDSS) Version 3.2.2.1. Questions…
Year: 2020
Type: Media
Source: FRAMES

Hudson, Bray, Blunck, Page, Butler
This work reports characteristics of embers generated by torching trees and seeks to identify the important physical and biological factors involved. The size of embers, number flux and propensity to ignite spot fires (i.e. number flux of ‘hot’ embers) are reported for several…
Year: 2020
Type: Document
Source: FRAMES

The 2019 McKinley Fire devastated a 10-mile stretch of homes along Alaska's Parks Highway. This video describes the fire and its aftermath through interviews with residents and fire professionals, and discusses ways to protect structures from wildfires. Useful websites about…
Year: 2020
Type: Media
Source: FRAMES

McAllister
Every year, wildland fires seem to be more unpredictable, causing losses of both lives and property.  Without a better understanding of the detailed mechanisms and underlying physical processes of wildland fire spread, our ability to predict, mitigate, and safely fight these…
Year: 2020
Type: Media
Source: FRAMES

Curcio, Mueller, Lahm, Fitch, Hyde
The Smoke and Roadway Safety Guide provides wildland fire personnel the tools and methods to effectively plan and forecast for roadway smoke impacts and to monitor, respond to, and mitigate smoke on roadways to reduce the risk to the public and fire personnel. This publication:…
Year: 2020
Type: Document
Source: FRAMES

Fernandes, Sil, Rossa, Ascoli, Cruz, Alexander
Wildfire environmental impacts and the threat they pose to human live and values depend of how fast it spreads, how much biomass is consumed, and how much energy it releases and at what rate. Nearly every feature of contemporary fire management relies upon the understanding and…
Year: 2020
Type: Document
Source: FRAMES

Alexander, Cruz
A 3-m between crown spacing is a commonly cited criterion found in the wildland-urban interface fire literature for minimizing the likelihood of a fully-developed crown fire from occurring in a conifer forest on level terrain. The validity of this general recommendation is…
Year: 2020
Type: Document
Source: FRAMES

Terhune
In his article Fuelbreaks for Wildland Fire Management, (Fire Ecology, Vol 1, Nbr 1, April 2005), Timothy Ingalsbee calls for '...wider range of designs, methods, and uses for fuelbreaks than has been offered in the typical fuelbreak proposals of the past.' But then he takes a…
Year: 2006
Type: Document
Source: FRAMES, TTRS

Alexander, Cruz, Lopes
CFIS -- which stands for Crown Fire Initiation and Spread -- is a software tool or system incorporating several recently developed models designed to simulate crown fire behavior. The main outputs of CFIS are: (1) the likelihood of crown fire initiation or occurrence; (2) the…
Year: 2006
Type: Document
Source: TTRS

DeWilde, Chapin
Wildfire is the major natural agent of disturbance in interior Alaska. We examined the magnitude of human impact on fire by comparing fire regime between individual 1-km2 grid cells designated for fire suppression with lands where fires are allowed to burn naturally. Two-thirds…
Year: 2006
Type: Document
Source: TTRS

Miller
From the text ... 'WFU [wildland fire use] is the management of naturally ignited wildland fires to protect, maintain, and enhance resources in predefined areas outlined in fire management plans.' © 2007 by the Association for Fire Ecology.
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