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Addressing wildfire is not simply a fire management, fire operations, or wildland-urban interface problem - it is a larger, more complex land management and societal issue. The vision for the next century is to: Safely and effectively extinguish fire, when needed; use fire where…
Person:
Year: 2011
Type: Document
Source: FRAMES
Topic(s): Administration, Aquatic, Aviation, Climate, Communications, Economics, Emissions and Smoke, Fire Behavior, Fire Ecology, Fire Effects, Fire History, Fire Occurrence, Fire Prevention, Fuels, Hazard and Risk, Intelligence, Logistics, Mapping, Models, Monitoring and Inventory, Outreach, Planning, Prescribed Fire, Regulations and Legislation, Restoration and Rehabilitation, Safety, Social Science, Weather, Wildland-Urban Interface (WUI)
Region(s): Alaska, California, Eastern, Great Basin, Hawaii, Northern Rockies, Northwest, Rocky Mountain, Southern, Southwest, National
Keywords: wildfire, wildland fire, National Cohesive Wildland Fire Management Strategy (Cohesive Strategy)

Background: During the summer of 2006, a wave of wildfires struck Galicia (north-west Spain), giving rise to a disaster situation in which a great deal of the territory was destroyed. Unlike other occasions, the wildfires in this case also threatened farms, houses and even human…
Person:
Year: 2011
Type: Document
Source: TTRS
Topic(s): Emissions and Smoke, Fire History, Fire Occurrence, Safety, Fire Effects, Wildland-Urban Interface (WUI)
Region(s): International
Keywords: fire case histories, fire damage (property), fire injuries (humans), smoke effects, wildfires, health factors, Spain, Europe, fire management

From the text ... 'Brazil's continued struggles with widespread wildfires highlight the country's need for focused fire managedment policies geared to its incredibly diverse ecosystem.'
Person:
Year: 2011
Type: Document
Source: TTRS
Topic(s): Emissions and Smoke, Fire Ecology, Hazard and Risk, Prescribed Fire, Wildland-Urban Interface (WUI)
Region(s): International
Keywords: Brazil, cerrado, ecosystem dynamics, fire damage (property), fire frequency, fire hazard reduction, fire injuries (animals), fire intensity, fire management, fire regimes, fire size, fire suppression (aerial), forest management, fragmentation, post fire recovery, South America, species diversity (animals), species diversity (plants), tropical forests, wildfires

We estimate fine particulate matter (PM2.5) concentrations daily using MODIS satellite observations of aerosol optical depth (AOD) for a major biomass burning event around Moscow during summer 2010. Evaluation of MODIS AOD with the Moscow AERONET site supports a MODIS-AOD error…
Person:
Year: 2011
Type: Document
Source: TTRS
Topic(s): Emissions and Smoke, Intelligence, Models, Wildland-Urban Interface (WUI)
Region(s): International
Keywords: wildfires, aerosols, air quality, particulates, remote sensing, statistical analysis, Russia, Europe, fire management, MODIS, PM2.5, Moscow wildfires, aerosol optical depth

Until the end of July 1977, the fires in the forested and brush-covered land of California had been fewer than expected. The summer fire season was well along, and with less than average acreage burned, protection agencies were encouraged. Then a series of events dramatically…
Person:
Year: 1977
Type: Document
Source: TTRS
Topic(s): Fire Ecology, Emissions and Smoke, Fuels, Weather, Wildland-Urban Interface (WUI)
Region(s): California, Great Basin
Keywords: chaparral, droughts, fire case histories, fire danger rating, fire management, fire size, fire suppression, fuel accumulation, lightning caused fires, national forests, northern California, smoke effects, southern California, topography, wind

From the Conclusion: 'The fire management program at Everglades National Park should continue to expand. With the recent development of a fire ecology research capability at the park, evaluation of the effects of the fire management program and the role of fire in the park is…
Person:
Year: 1977
Type: Document
Source: TTRS
Topic(s): Fire Ecology, Aquatic, Emissions and Smoke, Fire Ecology, Fire History, Fuels, Mapping, Prescribed Fire, Restoration and Rehabilitation, Safety, Weather, Wildland-Urban Interface (WUI)
Region(s): Southern, International
Keywords: Alligator mississippiensis, Cladium jamaicense, coastal vegetation, droughts, European settlement, everglades, fire dependent species, fire injuries (property), fire management, fire protection, fire regimes, fire suppression, grasses, hardwoods, health factors, human caused fires, invasive species, Juncus roemerianus, lightning caused fires, litter, marshlands, mosaic, Muhlenbergia filipes, Mycteria americana, national parks, Native Americans, Pinus elliottii densa, prairies, precipitation, Schizachyrium rhizomatum, season of fire, seasonal activities, smoke management, soil moisture, south Florida, Spartina bakeri, statistical analysis, succession, swamps, tropical hardwood hammocks, water, wetlands, wildfires, wildlife habitat management, woody plants

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Person:
Year: 1977
Type: Document
Source: TTRS
Topic(s): Emissions and Smoke, Fire Ecology, Models, Regulations and Legislation, Wildland-Urban Interface (WUI)
Region(s): Eastern
Keywords: air quality, biomass, CO - carbon monoxide, combustion, environmental impact analysis, fire management, gases, human caused fires, Iowa, leaves, litter, particulates, pollution, population ecology, sampling, smoke effects, smoke management, statistical analysis

We investigated how multiple fuel treatment types, organized in varying spatial arrangements, and at increasing proportions of a mixed-conifer forest in the Klamath Mountains of northern California (~20,000 ha) variably affect carbon sequestration and emissions over a 50 year…
Person:
Year: 2011
Type: Document
Source: FRAMES
Topic(s): Emissions and Smoke, Fuels, Models, Prescribed Fire, Wildland-Urban Interface (WUI)
Region(s): California
Keywords: FVS - Forest Vegetation Simulator, carbon sequestration, carbon storage, fuel treatment, FFE-FVS - Fire and Fuels Extension to the Forest Vegetation Simulator, Klamath National Forest

Large wildfire occurrence and burned area are modeled using hydroclimate and landsurface characteristics under a range of future climate and development scenarios. The range of uncertainty for future wildfire regimes is analyzed over two emissions pathways (the Special Report on…
Person:
Year: 2011
Type: Document
Source: FRAMES, TTRS
Topic(s): Climate, Emissions and Smoke, Fire Behavior, Fire Occurrence, Fuels, Hazard and Risk, Models, Wildland-Urban Interface (WUI)
Region(s): California
Keywords: fire modeling, burned area, moisture deficit, fire frequency, fire intensity, fire regimes, fire size, flammability, fuel moisture, wildfires, air temperature, climate change, precipitation, fire management, forest management

The New Jersey Pine Barrens (NJPB) is the largest forested area along the northeastern coast of the United States. The NJPB are dominated by pine (Pinus spp.) and oak (Quercus spp.) stands that are fragmented and subject to frequent disturbance and forest management. Over long…
Person:
Year: 2011
Type: Document
Source: FRAMES, TTRS
Topic(s): Emissions and Smoke, Fire History, Models, Wildland-Urban Interface (WUI)
Region(s): Eastern
Keywords: fire management, NEE - net ecosystem exchange, CENTURY, SOC - soil organic carbon, LANDIS-II, New Jersey Pine Barrens, eddy flux tower, fire frequency, fire hazard reduction, wildfires, air quality, C - carbon, forest fragmentation, nutrient cycling, soil nutrients, oak, Quercus spp., Pinus spp., pine, forest management, fuel management, hardwood forest, pine barrens, pine forests

The frequency of wildfires in forests of the Western United States has increased over the past 50 years and is expected to further increase in the face of warming climates. With an expanding wildland-urban interface (WUI), fire managers increasingly are facing challenges with…
Person:
Year: 2011
Type: Project
Source: FRAMES
Topic(s): Emissions and Smoke, Fuels, Intelligence, Prescribed Fire, Wildland-Urban Interface (WUI)
Region(s): Northwest
Keywords: fire frequency, information sharing, NWFSC - Northwest Fire Science Consortium