Mostrando entradas con la etiqueta Forest fires. Mostrar todas las entradas
Mostrando entradas con la etiqueta Forest fires. Mostrar todas las entradas

jueves, 8 de octubre de 2015

The National Science Foundation (NSF): Future wildfires may burn large parts of landscapes .-Futuros Incendios forestales pueden quemar gran parte de paisajes

Hola amigos:  A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Fundación Nacional de Ciencias de Los Estados Unidos, que sus científicos han descubiertos que los futuros incendios forestales pueden quemar los paisajes con irremediables daños a la naturaleza; que lamentablemente continuarán con el calentamiento global que afecta al planeta.
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Scientists look back at fire history to see into the future
burnt trees in a forest
The frequency of large fires has changed over past millennia, scientists have found.
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October 6, 2015
Wildfire history over the past 2,000 years in Colorado's mountains indicates that large fires will continue to increase in a warming climate, according to results of a new study.
"Even modest regional warming trends, like those we are currently experiencing, can cause exceptionally large areas of the Rockies to be burned by wildfires," says scientist John Calder of the University of Wyoming.
The findings are published this week in the journal Proceedings of the National Academy of Sciences (PNAS).
The paper, "Medieval warming initiated exceptionally large wildfire outbreaks in the Rocky Mountains," is co-written by University of Wyoming researchers Dusty Parker, Cody Stopka and Bryan Shuman, along with scientist Gonzalo Jimenez-Moreno of the University of Granada in Spain.
"This project demonstrates the significance of historical records in addressing current issues," says Thomas Baerwald, National Science Foundation (NSF) program director for Geography and Spatial Sciences, which funded the research. "Scientists are working to understand the complex interactions among climate, vegetation, land use, fire and other factors. The insights gained from such relationships in the past can provide new insights for understanding these processes today."
Calder, Shuman and colleagues examined charcoal deposits in 12 lakes in and near the Mount Zirkel Wilderness of northern Colorado, finding that wildfires burned large portions of the area during a documented spike in temperatures in North America starting about 1,000 years ago.
That period, known as the Medieval Warm Period (MWP), lasted about 300 years during which temperatures rose just under 1 degree Fahrenheit. A single degree might not seem like much, but it can have a huge effect on the potential for wildfires.
Temperature increases over the past few decades have been comparable to those of the MWP, resulting in some of the largest wildfires in U.S. history.
Since the mid-1980s, starting with large fires in Yellowstone National Park in 1988, the frequency of large wildfires in the American West has increased.
If the warming trend continues as projected, the fires of recent years could be just the start of more extensive and devastating blazes, the researchers say.
The study looked at how often large areas burned in the past 2,000 years. Results show that other than the 20th century, the only time when fires burned substantially more area was during the MWP.
"When we look back in time, we only see evidence of large areas burning one time in the last 2,000 years," Calder says. "This suggests large wildfires of the magnitude we've recently seen used to be very infrequent."
The researchers estimate that 83 percent of their 385-square-mile study area burned at the beginning of the MWP when the climate warmed 0.9 degrees.
By comparison, the average increase in temperature in the Rocky Mountain region since 2000 has been about 1.25 degrees higher than during the 20th century.
"Corresponding to those higher temperatures, 12 percent of our study area burned in the large Zirkel Complex fire in 2002," Calder says. Data indicate that in the Medieval Warm Period large fires similar to the Zirkel Complex fire burned in that same wilderness area once every decade or two when the temperatures warmed by 0.9 degrees Fahrenheit.
"Using Yellowstone fire history as a baseline for comparison, our minimum estimate of 50 percent of Mount Zirkel sites burned within a century at the beginning of the MWP exceeds any century-scale estimate of Yellowstone burning for the past 750 years," the scientists write in their paper.
Over the century that led up to and included the massive 1988 fires, only about 30 percent of Yellowstone burned.
"The large increase in the number of sites burned by fires during the MWP highlights the risk that large portions of individual landscapes may burn as the climate continues to warm today," the researchers conclude.
Shuman's research on forest dynamics is also funded by NSF's Division of Environmental Biology.
-- Cheryl Dybas, NSF (703) 292-7734 cdybas@nsf.gov
-- Chad Baldwin, University of Wyoming (307) 766-3257 cbaldwin@uwyo.edu
Investigators Bryan Shuman
Related Institutions/Organizations University of Wyoming
Researcher in a forested mountain area
Researchers hike into Colorado's Mount Zirkel Wilderness Area to study fire and ecosystem changes.
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View of Lake Eileen in Colorado
Lake-bottom sediments were sampled at Lake Eileen in Colorado to study charcoal from past fires.
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Scientist John Calder in a boat
Scientist John Calder prepares to sample sediment and charcoal from the bottom of Lake Eileen.
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forest next to a lake
Hidden Lake in Colorado's Medicine Bow-Routt National Forest is another of a dozen study sites.
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The Seven Lakes study site in the Mount Zirkel Wilderness Area also has charcoal from past fires.
The Seven Lakes study site in the Mount Zirkel Wilderness Area also has charcoal from past fires.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
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martes, 15 de abril de 2014

nsf.gov - National Science Foundation - Drought and fire in the Amazon lead to sharp increases in forest tree mortality

Deforestation and fragmentation of forests help create tinderbox conditions
Grasses on fire in Mato Grosso, Brazil
Grasses in Mato Grosso, Brazil, catch fire regularly near the edges of forests and croplands.
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April 14, 2014
Ongoing deforestation and fragmentation of forests in the Amazon help create tinderbox conditions for wildfires, contributing to rapid and widespread forest loss during drought years, according to a team of researchers.
Their findings show that forests in the Amazon could reach a "tipping point" when severe droughts coupled with forest fires lead to large-scale loss of trees, making recovery more difficult, said Jennifer Balch, a geographer at Penn State University.
"We documented one of the highest tree mortality rates witnessed in Amazon forests," Balch said. "Over the course of our experiment, 60 percent of the trees died with combined drought and repeated fire.
"Our results suggest that a perfect firestorm, caused by drought conditions and previous fire disturbance, crossed a threshold in forest resistance."
The researchers conclude in today's issue of the journal Proceedings of the National Academy of Sciences (PNAS) that "efforts to end deforestation in the Amazon must be accompanied by programs and policies that reduce the accidental spread of land management fires into neighboring forests--and effectively control forest fires when started."
Balch noted that climate change is expected to warm the air in the Amazon region by several degrees and substantially reduce regional precipitation, making understanding the interactions between droughts and fires even more important.
"However, before any prediction of Amazon climate warming occurs, our study demonstrates that drought and fire are already driving forest dieback," she said.
The eight-year study is the largest and longest-running fire experiment in tropical forests. The researchers burned 50-hectare forest plots in the Southeastern Amazon, a region prone to the effects of climate change.
"If drought and wildfires happen in the same time-frame, there are far-reaching consequences for the health of Amazon forests," said Henry Gholz, a program director in the National Science Foundation Division of Environmental Biology, which funded the research. "When climate change becomes part of the mix, questions for these forests loom yet larger."
The plots were burned every year, every three years, or not at all. The timeframe for the study included 2007, a year of severe drought.
By comparing the tree deaths for the plots each year, the researchers could assess the effect of drought on fire intensity and tree deaths.
"Drought causes more intense and widespread fires," said lead PNAS paper author Paulo Brando of the Instituto de Pesquisa Ambiental da Amazônia, Carnegie Institution for Science, and Woods Hole Research Center.
"Four times more adult trees were killed by fire during a drought year, which means that there was also more carbon dioxide released to the atmosphere, more tree species loss and a greater likelihood of grasses invading the forest."
The researchers found that fragmented forests are more susceptible to the effects of drought and fire, and that drought leads to an increase in fuel such as leaves and branches.
The findings are key, in part, because most climate change models have not included the effects of fires on Amazon forests.
"Basically, none of the models used to evaluate future Amazon forest health includes fire, so most of these predictions underestimate the amount of tree death and overestimate overall forest health," said Michael Coe, a scientist at the Woods Hole Research Center.
Fire as a forest management tool can contribute to an increase in severe fires because the resulting thinner canopy leads to drier forest conditions.
This lack of humidity does not dampen fires but does encourage airflow between fields and forests. Fragmented forests also have more edge space, which is susceptible to both fire and invasive grasses, another potential fuel.
"These forests are tough and can take a lot, but if drought reaches a certain level, big trees begin to die," said Daniel Nepstad of the Earth Innovation Institute, who also co-led the project. "We now know that severe drought makes fires more intense, creating a second tree mortality threshold."
The results are important because large portions of the Amazon forest already experience droughts and are susceptible to fire--they are broken into smaller blocks by agriculture and are close to human settlements, the predominant source of fire in the Amazon.
The researchers analyzed NASA satellite data to provide regional context for results from the experimental burns.
"In 2007, fires in Southeast Amazonia burned 10 times more forest than in an average climate year -- an area equivalent to a million soccer fields," said scientist Douglas Morton of NASA.
"These smaller forest fragments have more edges than large blocks of forest, which expose them to the hotter, drier conditions in the surrounding landscape and make them more vulnerable to escaped fires," said researcher Marcia Macedo of the Woods Hole Research Center.
By 2011, about eight percent of Southeast Amazonia's forests were less than 328 feet from an agricultural or pasture clearing. This lattice-like network of degraded forest edges is now very susceptible to future fires.
The research was also funded by the Packard Foundation, NASA and the Max Planck Institute for Biogeochemistry.
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734, cdybas@nsf.gov
Eunice Yeomans, WHRC, (508) 444-1509, eyoumans@whrc.org
Anne Danahy, PSU, (814) 865-4504, acd2@psu.edu
The National Science Foundation (NSF) is an independent federal agency that supports fundamental research and education across all fields of science and engineering. In fiscal year (FY) 2014, its budget is $7.2 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives about 50,000 competitive requests for funding, and makes about 11,500 new funding awards. NSF also awards about $593 million in professional and service contracts yearly.
Useful NSF Web Sites:
NSF Home Page: http://www.nsf.gov
NSF News: http://www.nsf.gov/news/
For the News Media: http://www.nsf.gov/news/newsroom.jsp
Science and Engineering Statistics: http://www.nsf.gov/statistics/
Awards Searches: http://www.nsf.gov/awardsearch/

Experimental fire burning the understory of a forest between Cerrado and Amazonia, Brazil.
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Scientist advancing  a fire line in an experimental fire plot in Mato Grosso, Brazil.
Advancing fire line in an experimental fire plot in Mato Grosso, Brazil.
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Forest with bare land degraded by experimental fires in Mato Grosso, Brazil.
Forest degraded by experimental fires in Mato Grosso, Brazil.
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An experimental fire in the Brazilian forest
Igniting an experimental fire in the Brazilian forest, using a drip torch.
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Fire experiment in Mato Grasso, Brazil with tinderbox grasses along the forest
Fire experiment in Mato Grasso, Brazil; tinderbox grasses lie along forests and croplands.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui

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