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Wildlife, Fire & Future Climate

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Author :
Release : 2002
Genre : Nature
Kind : eBook
Book Rating : 561/5 ( reviews)

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Book Synopsis Wildlife, Fire & Future Climate by : Brendan Mackey

Download or read book Wildlife, Fire & Future Climate written by Brendan Mackey. This book was released on 2002. Available in PDF, EPUB and Kindle. Book excerpt: The conservation of Earth's forest ecosystems is one of the great environmental challenges facing humanity in the 21st century. This volume explores these themes through a landscape-wide study of refugia and future climate in the tall, wet forests of the Central Highlands of Victoria.

Wildlife, Fire and Future Climate

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Author :
Release : 2002-07-01
Genre : Science
Kind : eBook
Book Rating : 859/5 ( reviews)

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Book Synopsis Wildlife, Fire and Future Climate by : Brendan Mackey

Download or read book Wildlife, Fire and Future Climate written by Brendan Mackey. This book was released on 2002-07-01. Available in PDF, EPUB and Kindle. Book excerpt: The conservation of Earth's forest ecosystems is one of the great environmental challenges facing humanity in the 21st century. All of Earth's ecosystems now face the spectre of the accelerated greenhouse effect and rates of change in climatic regimes that have hitherto been unknown. In addition, multiple use forestry – where forests are managed to provide for both a supply of wood and the conservation of biodiversity – can change the floristic composition and vegetation structure of forests with significant implications for wildlife habitat. Wildlife, fire and future climate: a forest ecosystem analysis explores these themes through a landscape-wide study of refugia and future climate in the tall, wet forests of the Central Highlands of Victoria. It represents a model case study for the kind of integrated investigation needed throughout the world in order to deal with the potential response of terrestrial ecological systems to global change. The analyses presented in this book represent one of the few ecosystem studies ever undertaken that has attempted such a complex synthesis of fire, wildlife, vegetation, and climate. Wildlife, fire and future climate: a forest ecosystem analysis is written by an experienced team of leading world experts in fire ecology, modelling, terrain and climate analysis, vegetation and wildlife habitat. Their collaboration on this book represents a unique and exemplary, multi-disciplinary venture.

Firestorm

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Author :
Release : 2017-10-05
Genre : Nature
Kind : eBook
Book Rating : 185/5 ( reviews)

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Book Synopsis Firestorm by : Edward Struzik

Download or read book Firestorm written by Edward Struzik. This book was released on 2017-10-05. Available in PDF, EPUB and Kindle. Book excerpt: "Frightening...Firestorm comes alive when Struzik discusses the work of offbeat scientists." —New York Times Book Review "Comprehensive and compelling." —Booklist "A powerful message." —Kirkus "Should be required reading." —Library Journal For two months in the spring of 2016, the world watched as wildfire ravaged the Canadian town of Fort McMurray. Firefighters named the fire “the Beast.” It acted like a mythical animal, alive with destructive energy, and they hoped never to see anything like it again. Yet it’s not a stretch to imagine we will all soon live in a world in which fires like the Beast are commonplace. A glance at international headlines shows a remarkable increase in higher temperatures, stronger winds, and drier lands– a trifecta for igniting wildfires like we’ve rarely seen before. This change is particularly noticeable in the northern forests of the United States and Canada. These forests require fire to maintain healthy ecosystems, but as the human population grows, and as changes in climate, animal and insect species, and disease cause further destabilization, wildfires have turned into a potentially uncontrollable threat to human lives and livelihoods. Our understanding of the role fire plays in healthy forests has come a long way in the past century. Despite this, we are not prepared to deal with an escalation of fire during periods of intense drought and shorter winters, earlier springs, potentially more lightning strikes and hotter summers. There is too much fuel on the ground, too many people and assets to protect, and no plan in place to deal with these challenges. In Firestorm, journalist Edward Struzik visits scorched earth from Alaska to Maine, and introduces the scientists, firefighters, and resource managers making the case for a radically different approach to managing wildfire in the 21st century. Wildfires can no longer be treated as avoidable events because the risk and dangers are becoming too great and costly. Struzik weaves a heart-pumping narrative of science, economics, politics, and human determination and points to the ways that we, and the wilder inhabitants of the forests around our cities and towns, might yet flourish in an age of growing megafires.

Greenhouse Gas Emissions from Wildland Fires

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Author :
Release : 2025-01-30
Genre : Nature
Kind : eBook
Book Rating : 539/5 ( reviews)

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Book Synopsis Greenhouse Gas Emissions from Wildland Fires by : National Academies of Sciences Engineering and Medicine

Download or read book Greenhouse Gas Emissions from Wildland Fires written by National Academies of Sciences Engineering and Medicine. This book was released on 2025-01-30. Available in PDF, EPUB and Kindle. Book excerpt: Climate change is fundamentally changing ecosystems and their fire conditions, and the 2023 fire season highlighted the urgency of developing and implementing solutions to address wildland fires. Wildland fires transfer carbon between the land and the atmosphere through emissions of greenhouse gases (GHGs), along with other gasses and particles. Though fires can be a natural part of healthy, evolving ecosystems, large, uncontrolled wildland fires can have devastating consequences to human health, communities, and biodiversity. Human-driven changes in wildland fire regimes have the potential to increase GHG emissions at a scale that could inhibit global efforts to achieve net-zero GHG emissions in the coming decades. The National Academies of Sciences, Engineering, and Medicine convened a workshop on September 13-15, 2023, to identify opportunities to improve measurements and model projections of GHG emissions from wildland fires and discuss management practices that could be incorporated into current and future action plans. Participants emphasized the importance of learning from historic and current Indigenous fire management practices and centering Indigenous voices and leadership across all stages of fire management. Different global ecosystems - particularly temperate, boreal, and tropical biomes - have been impacted by climate and land use changes where historical fire regimes and the carbon balance have been disrupted. However, discussions highlighted the diverse set of available regionally differentiated and ecosystem-appropriate mitigation strategies. With improved understanding of fires and their GHG emissions, better information for mitigation and management, and incorporation of wildfire GHG emissions into national accounting mechanisms, practitioners, communities, and decision makers will be better equipped to prepare, adapt, and respond to future wildland fires.

Changes in the Fire Regime and the Relative of Role Fuel and Climate of a Historically Flammability Limited Watershed in the Western Cascades as it Responds to Two Possible Future Climate Scenarios

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Author :
Release : 2022
Genre : Climatic changes
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Changes in the Fire Regime and the Relative of Role Fuel and Climate of a Historically Flammability Limited Watershed in the Western Cascades as it Responds to Two Possible Future Climate Scenarios by : Jonathan Gendron

Download or read book Changes in the Fire Regime and the Relative of Role Fuel and Climate of a Historically Flammability Limited Watershed in the Western Cascades as it Responds to Two Possible Future Climate Scenarios written by Jonathan Gendron. This book was released on 2022. Available in PDF, EPUB and Kindle. Book excerpt: Anthropogenic climate change has shifted forest fire regimes in the Pacific Northwest U.S by increasing wildfire frequency and area burned and the shift is projected to continue during the 21st century if temperature and summertime aridity continually increase. Such changes threaten natural resources in these systems, including drinking water reservoirs, which could see reduced water quality during post-fire recovery. Productive forests with historically flammability-limited wildfire regimes are susceptible to large-scale high-severity events because of large fuel sinks; therefore, as flammability increases with climate change, the frequency of these events is also expected to increase. However, it is unclear how climate change and wildfire will alter long-term fuel availability in these forests; if a strong fuel limitation develops, it could potentially offset increases in fuel flammability. Herein, we apply RHESSys-WMFire, a process-based ecohydrological framework coupled with a stochastic fire-spread model and a post-fire effects model, to explore the long-term coevolution of climate, vegetation, and wildfire in a historically climate-limited forest in the western cascades as it responds to two future climate scenarios: (1) one that enforces extreme fire-weather, and (2) one that is less arid and more suitable for forest production. Both scenarios feature three 525-year climate sequences to capture the co-evolution of vegetation and fire behavior for three stable climate regimes: the present, near future (2040s), and distant future (2070s). Each sequence was constructed from 30 years of climate data from existing CMIP5 GCM using a randomized climate resampling technique. We found both climate storylines forced a fuel limitation that increased during the 21st-century; however, increases in fuel flammability were greater, and resulted in increases in wildfire size, frequency, and area burned in near and distant future relative to the present. The severity of fuel limitation also corresponded with shifts in the fire-size distribution and the fire recurrence interval of different elevations, wherein strong fuel limitation caused relatively smaller fires and lower frequency. We surmise that reduced fuel availability will scale with the severity of climate forcing; however, in forests where fuel flammability is presently low, it will begin to limit wildfire behavior until a certain threshold has been reached.

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