Mostrando entradas con la etiqueta Drought. Mostrar todas las entradas
Mostrando entradas con la etiqueta Drought. Mostrar todas las entradas

domingo, 3 de abril de 2016

NSF: California drought patterns becoming more common .- Patrones de sequía cada vez más común en California

Hola amigos: A VUELO DE UN QUINDE EL BLOG., Los científicos atmosféricos han encontrado que las temperaturas más altas de California están casi siempre asociados con los cantos de bloqueo, en regiones de alta presión atmosférica que pueden alterar los patrones de viento - entre ellos uno conocido como el ridículamente Resilient Ridge. La Triple R, como se le llama, también está vinculado con la sequía de California.En un nuevo estudio publicado en línea esta semana en la revista Advances Science, un equipo de investigadores dirigido por el científico de la Universidad de Stanford Noah Diffenbaugh analizó la ocurrencia de los patrones de circulación atmosférica a gran escala que se produjo durante la precipitación y temperatura extremos históricos de California."Patrones de circulación atmosférica se asocian con varios eventos meteorológicos y climáticos, que van desde las inundaciones causadas por las lluvias de un solo día a varios años, las sequías en todo el continente", dijo Diffenbaugh.Diffenbaugh, investigador de Stanford Daniel Swain y otros autores colaboradores investigaron si los patrones de presión atmosféricas similares a las que ocurrieron durante años más secos calientes y más frescos de California, históricamente, más húmedas, se han producido con mayor frecuencia en los últimos años.
More information...........
 
http://www.nsf.gov/news/news_summ.jsp?cntn_id=137911&WT.mc_id=USNSF_51&WT.mc_ev=click

Atmospheric patterns linked with drought occurred more frequently in recent decades

Trinity Lake dried out
California's Trinity Lake is a mere shadow of its former self, since drought arrived.
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April 1, 2016
This is part 15 in a series on NSF's geosciences risk and resilience interest area. Please see parts one, two, three, four, five, six, seven, eight, nine, 10, 11, 12, 13 and 14.
Atmospheric scientists have found that California's highest temperatures are almost always associated with blocking ridges, regions of high atmospheric pressure than can disrupt wind patterns – including one known as the Ridiculously Resilient Ridge. The Triple R, as it's called, is also linked with California's drought.
In new research published online this week in the journal Science Advances, a team of researchers led by Stanford University scientist Noah Diffenbaugh analyzed the occurrence of large-scale atmospheric circulation patterns that occurred during California's historical precipitation and temperature extremes.
"Atmospheric circulation patterns are associated with various weather and climate events, ranging from flash floods caused by single-day downpours to multi-year, continent-wide droughts," Diffenbaugh said.
Diffenbaugh, Stanford researcher Daniel Swain and other coauthors investigated whether atmospheric pressure patterns similar to those that happened during California's historically driest, wettest, warmest and coolest years have occurred more frequently in recent years.
 
Implications for water resources, agriculture, energy
 
"Improved understanding of the drought in California has implications for water resources management, agriculture, hydropower and energy," said Anjuli Bamzai, program director in the National Science Foundation (NSF) Division of Atmospheric and Geospace Sciences, which funded the research.
Bamzai said that while the region has recently experienced relief in snowfall and rainfall.
"The epic drought is far from over. These scientists show that the frequency of atmospheric circulation patterns that worsen drought conditions has increased over the long-term."
The study focused on the northeastern Pacific Ocean and far western North America, encompassing the winter "storm track" region from which the vast majority of California precipitation originates.
The researchers used historical climate data from U.S. government archives to investigate changes during California's rainy season, from October to May.
They identified the specific North Pacific atmospheric patterns associated with the most extreme temperature and precipitation seasons between 1949 and 2015. The analysis revealed a significant increase in the occurrence of atmospheric patterns linked with certain precipitation and temperature extremes over the 67-year period.
In particular, the scientists found increases in atmospheric patterns resembling what has happened during the latter half of California's ongoing multi-year drought.
"California's driest and warmest years are almost always associated with some sort of persistent high pressure region, which can deflect the Pacific storm track away from California," said Swain. "Since California depends on a relatively small number of heavy precipitation events to make up the bulk of its annual total, missing out on even one or two of these can have significant implications for water availability."
 
The "Ridiculously Resilient Ridge"
 
The scientists concluded that one such persistent ridge pattern was diverting winter storms northward and preventing them from reaching California during the state's drought.
In 2014, the researchers published findings showing that the increasing occurrence of extremely high atmospheric pressure over this same part of the Northeastern Pacific is very likely linked with environmental change. But the group wanted to know whether the particular spatial pattern associated with the Triple R has become more common -- a question not asked in the 2014 study.
The new study provides a more direct answer to this question. "We found that this specific extreme ridge pattern associated with the ongoing California drought has increased in recent decades," Swain said.
Despite the fact that the number of very dry atmospheric patterns in California has increased, the number of very wet atmospheric patterns hasn't declined.
"We're seeing an increase in certain atmospheric patterns that have historically resulted in extremely dry conditions, and yet that's apparently not occurring at the expense of patterns that have been associated with extremely wet patterns," Swain said. "We're not necessarily shifting toward perpetually lower precipitation conditions in California -- even though the risk of drought is increasing."
That might sound contradictory, but it's not, the scientists say.
Imagine looking at a 10-year period and finding that two of the years are wet, two are dry, and the rest experienced precipitation close to the long-term average. Now imagine another decade with three very dry years, three very wet years, and only four years with near-average precipitation.
"What seems to be happening is that we're having fewer 'average' years, and instead we're seeing more extremes on both sides," Swain said. "This means that California is starting to experience more warm/dry periods, punctuated by wet conditions."
 
The role of temperatura
 
Another important contributor to drought is temperature. Diffenbaugh previously found that higher temperatures during periods of low precipitation in California doubled the risk of drought.
The researchers also discovered that the long-term warming of California has substantially increased the number of hot years, thereby increasing the risk that low precipitation periods produce drought.
"The current record-breaking drought in California has arisen from both extremely low precipitation and extremely warm temperature," Diffenbaugh said. "We found clear evidence that the extreme atmospheric pattern associated with these unprecedented warm and dry conditions has become more likely in recent decades."
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734,
cdybas@nsf.gov
Ker Than, Stanford University, (650) 723-9820,
kerthan@stanford.edu

Related WebsitesNSF Grant: Dynamics and Impacts of Fine-Scale Climate Change: http://www.nsf.gov/awardsearch/showAward?AWD_ID=0955283&HistoricalAwards=false
NSF News: Cause of California drought linked to climate change: https://www.nsf.gov/news/news_summ.jsp?cntn_id=132709


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) 2016, its budget is $7.5 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives more than 48,000 competitive proposals for funding and makes about 12,000 new funding awards. NSF also awards about $626 million in professional and service contracts yearly.
 Get News Updates by Email 
Useful NSF Web Sites:
NSF Home Page:
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The drought that crippled California is by some measures the worst in the state's history.
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Cracked, dry earth
Cracked, dry earth is common throughout California's drying waterways and reservoirs.
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Tuolumne River and its dry riverbed
Drought has drained California's Tuolumne River, leaving riverbed where there was water.
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satellite image of California's coast and mountains
Large, fast-moving wildfires have sparked in northern and southern California during the drought.
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View from the International Space Station in January 2014 showing no snow in California's mountains
View from the International Space Station in January 2014: No snow on California's mountains.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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jueves, 25 de febrero de 2016

NSF: Increasing drought threatens almost all U.S. forests .- El aumento de la sequía amenaza a casi todos los bosques de Estados Unidos

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Fundación Nacional de Ciencias de Los Estados Unidos, nos dice: "Bosques en todo el país están sintiendo el calor de la creciente sequía y el cambio climático, según un nuevo estudio realizado por científicos de 14 instituciones de investigación.
"En las últimas dos décadas, las temperaturas más cálidas y precipitaciones variables han aumentado la severidad de las sequías forestales en gran parte del territorio continental de Estados Unidos", dijo James Clark, autor principal del estudio y científico ambiental en la Universidad de Duke.
Clark y sus colegas publicaron su trabajo en la revista Global Change Biology.
"Mientras que los efectos han sido más pronunciada en Occidente, nuestro análisis muestra virtualmente que todos los bosques de Estados Unidos están experimentando cambios y son vulnerables a futuras caídas", dijo Clark.
Es una tarea difícil predecir lo que estos bosques se verá como en 20 años, según los investigadores.
More information....
 
Forests nationwide feeling the heat

dried trees in a forest of pinons in the U.S. Southwest.
Drought has left little but skeleton trees in a forest of pinons in the U.S. Southwest.
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February 22, 2016
Forests nationwide are feeling the heat from increasing drought and climate change, according to a new study by scientists from 14 research institutions.
"Over the last two decades, warming temperatures and variable precipitation have increased the severity of forest droughts across much of the continental United States," said James Clark, lead author of the study and an environmental scientist at Duke University.
Clark and colleagues published their paper today in the journal Global Change Biology.
"While the effects have been most pronounced in the West, our analysis shows virtually that all U.S. forests are now experiencing change and are vulnerable to future declines," Clark said.
It's a tall order to predict what these forests will look like in 20 years, the researchers say.
 
Drought across the U.S. West
 
Drought-induced forest diebacks (the deaths of entire communities of trees known as stands), bark beetle infestations, and wildfires are already occurring on large scales across the West. Many models predict droughts are likely to become more severe, frequent and prolonged across much of the U.S.
Evidence is also mounting that climate is changing faster than tree populations can respond.
As conditions become drier and warmer, many tree populations, especially those in Eastern forests, may not be able to expand into new, more favorable habitats, fast enough to keep up.
"Most forest research is carried out at local study sites, where trees are individually catalogued and measured," said Henry Gholz, a program director in the Division of Environmental Biology at the National Science Foundation (NSF), which supported the research. "This approach risks 'missing the forest for the trees.'"
The new results show that changes in both western and eastern U.S. forests could happen quickly under drier conditions in the future, said Gholz.
"Prolonged drought affects wildfire risks, species distribution, forest biodiversity and productivity, and virtually all goods and services provided by forests," Clark said, "so there is a pressing need to know what is happening now, what might happen in the future, and how we can manage for these changes."
 
Forests and drought, from A to Z
 
The new paper addresses this need by providing a comprehensive overview of current and projected drought effects on forests nationwide, how they vary by region, and which management practices could help to partially mitigate adverse effects.
The paper also identifies critical gaps in our knowledge base that hinder scientists' ability to predict the pace and extent of future drought effects on forests.
"We currently have a pretty good handle on predicting the impacts of climate change and drought on individual trees," Clark said. "Ecologists have identified many of the important differences between species that explain how they respond differently to drought."
But, he said, uncertainty still exists about what might happen at the species-wide or stand-wide levels, particularly in Eastern forests. "These are the scales where we really need reliable predictions so forest managers can take steps now to help reduce large-scale adverse future effects." 
Without a stronger basis for understanding how the complex interactions among trees, species and environmental conditions work at broader scales, even the most sophisticated current models can provide only limited guidance, Clark said. "That's where we need to focus our efforts now."
Major co-authors of the paper are Louis Iverson and Christopher W. Woodall of the U.S. Forest Service, as well as scientists with the U.S. Geological Survey, the University of Vermont, the University of California (UC), Santa Barbara, Sarah Lawrence College, the University of Michigan, the University of Arizona, Ohio State University, Harvard Forest, UC Davis, Northern Arizona University and the Swiss Federal Research Institute.
-NSF-

Media Contacts Cheryl Dybas, NSF, (703) 292-7734, cdybas@nsf.gov
Tim Lucas, Duke University, (919) 613-8084, tdlucas@duke.edu

Related WebsitesNSF News: Cause of California drought linked to climate change: https://www.nsf.gov/news/news_summ.jsp?cntn_id=132709
NSF News: Drought, heat likely to affect U.S. West's power grid: http://www.nsf.gov/news/news_summ.jsp?cntn_id=135021
NSF Discovery: Earth Week: Bark beetles change Rocky Mountain stream flows, affect water quality:
http://nsf.gov/discoveries/disc_summ.jsp?cntn_id=130951
NSF Discovery: Ghosts of Forests Past: Bark Beetles Kill Lodgepole Pines, Affecting Entire Watersheds:
 http://www.nsf.gov/discoveries/disc_summ.jsp?cntn_id=128398
NSF Discovery: Born during a drought: Bad news for baboons: http://nsf.gov/discoveries/disc_summ.jsp?cntn_id=134000&org=NSF


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) 2016, its budget is $7.5 billion. NSF funds reach all 50 states through grants to nearly 2,000 colleges, universities and other institutions. Each year, NSF receives more than 48,000 competitive proposals for funding and makes about 12,000 new funding awards. NSF also awards about $626 million in professional and service contracts yearly.
 Get News Updates by Email 
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/
Wild fires in a forest
Wildfires, with flames fanned by drought, are happening on large scales across the U.S. West.
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Dying ponderosa pines in a forest in California
Dying ponderosa pines cover a hillslope during the third year of a warm drought in California.
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drying leaves in a linden tree.
Symptoms of drought are appearing across the country, such as "leaf scorch" on this linden tree.
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view of dried and green trees mixed in a forest
Bark beetles have moved in and killed large swaths of forests in the wake of drought.
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aerial view of a forest
Many tree species may not be able to expand into more favorable habitats fast enough.
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The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 5 de abril de 2015

nsf.gov - National Science Foundation - Born during a drought: Bad news for baboons .- Nacido durante una sequía: Malas noticias para los babuinos

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Fundación Nacional de Ciencias de Los Estados Unidos, donde han descubierto que los monos Babuinos, hicieron frente a sequias en el Desierto de Mojave en  Kenya.
NSF, nos dice: El dicho "lo que no te mata te hace más fuerte" no puede soportar a un escrutinio científico.Después de las llanuras del sur de Kenia experimentaron una grave sequía en 2009, que tuvo un efecto terrible en la vida silvestre, los investigadores observaron cómo 50 babuinos salvajes hicieron frente a la sequía, y si las condiciones que se enfrentaron en la infancia juegan un papel.
La sabana semiárida del sur de Kenia por lo general recibe un promedio de 14 pulgadas de lluvia al año - similares a gran parte de Nebraska o Kansas - pero en 2009 se redujo a cinco centímetros, menos que el desierto de Mojave.
El año anterior no fue mucho mejor: las lluvias en 2008 se redujo a la mitad de los niveles normales.


More information..........
Findings have implications for human health
Baboon group in Amboseli, Kenya
Baboon group in Amboseli, Kenya, drinking from rainpools that are slowly drying up in a drought.
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April 1, 2015
The saying "what doesn't kill you makes you stronger" may not hold up to scientific scrutiny.
After the plains of southern Kenya experienced a severe drought in 2009 that took a terrible toll on wildlife, researchers looked at how 50 wild baboons coped with the drought, and whether the conditions they faced in infancy played a role.
The semi-arid savanna of southern Kenya usually receives an average of 14 inches of rain a year--akin to much of Nebraska or Kansas--but in 2009 it fell to five inches, less than the Mojave Desert.
The year before wasn't much better: rainfall in 2008 dropped to half normal levels.
 
Grasslands withered
 
The grasslands the animals depend on for food dried up and watering holes disappeared, leaving many animals starving or weak from hunger.
"We lost 98 percent of the wildebeest population, 75 percent of the zebra population and 30 percent of the elephant population," said Susan Alberts, a biologist at Duke University. "It was impossible to go anywhere without smelling death."
Most baboons made it, but the drought left them underweight and many females stopped ovulating.
In a forthcoming paper in the journal American Naturalist, the researchers compared two groups of females--one group born during low rainfall years, the other born during normal rainfall years.
 
Born in a drought
 
All females in the study were adults by time of the 2009 drought, but those born in lean times fared worse in 2009 than those born in times of plenty, the researchers found.
"This study demonstrates lifetime fertility reductions for baboons born during stressful conditions or to low-ranking mothers," said George Gilchrist, program director in the National Science Foundation's (NSF) Division of Environmental Biology, which funded the research along with NSF's Divisions of Integrative Organismal Systems and Behavioral and Cognitive Sciences.
"These 'disadvantaged' early life experiences are linked with less resilience to stressful conditions experienced as adults."
During the 2009 drought, baboons born during low rainfall years were 60 percent less likely to become pregnant, whereas pregnancy rates dipped by only 10 percent for females born during normal rainfall years.
Drought babies born to higher-status mothers were less affected by the 2009 event.
"It might be that baboons born to higher-ranked moms have better access to food, or suffer lower levels of social stress," Alberts said.
 
Implications for human health
 
The findings also help explain why people who are malnourished in early childhood go on to have higher rates of obesity, diabetes and heart disease as adults.
Some researchers argue that human babies conceived or born in lean times are programmed for food shortages later in life.
They develop a "thrifty metabolism," aimed at storing fat and conserving energy in order to survive starvation.
Things go awry, the thinking goes, only when the environments they experienced as infants and as adults don't match, such as when a child conceived in famine grows up and eats an excess of cheeseburgers, said paper co-author Amanda Lea, a biologist at Duke.
But the baboon fertility study lends support to another idea, namely that kids who don't get enough to eat during their first year of life are simply less resilient as adults than their counterparts.
"The data suggest that early adversity carries lifelong costs," said co-author Jenny Tung, a biologist at Duke.
"It's bad to be born in bad times, but with the right social or economic environment, that can be mitigated," Alberts added.
Jeanne Altmann of Princeton University is also a co-author of the paper.
In addition to NSF, the National Institute on Aging in Bethesda, Md.; Duke University; Princeton University; and the Max Planck Institute for Demographic Research supported the research.
-- Cheryl Dybas, NSF (703) 292-7734 cdybas@nsf.gov
-- Robin Ann Smith, Duke University (919) 681-8057 ras10@duke.edu
Investigators Jenny Tung
Susan Alberts
Related Institutions/Organizations Duke University
Related Programs Biological Anthropology
A juvenile and an infant baboon play together on a tree snag
A juvenile and an infant baboon play together on a tree snag in Amboseli.
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Adolescent female baboon grooming her mother.
Adolescent female baboon grooming her mother.
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Adult female baboon with a one-day-old infant, sitting with an adult male baboon.
Adult female baboon with a one-day-old infant, sitting with an adult male baboon.
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Infant baboon reaching toward an older juvenile who is feeding.
Infant baboon reaching toward an older juvenile who is feeding.
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Juvenile male baboon holding his young infant brother.
Juvenile male baboon holding his young infant brother.
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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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