Mostrando entradas con la etiqueta Warming Temperaturas. Mostrar todas las entradas
Mostrando entradas con la etiqueta Warming Temperaturas. Mostrar todas las entradas

viernes, 1 de abril de 2016

NSF : Press Release 16-032 .- Ocean temperatures predict U.S. heat waves 50 days out .- Las temperaturas del océano predijeron olas de calor de Estados Unidos 50 días fuera..............

Hola amigos: A VUELO DE UN QUINDE EL BLOG., La formación de un patrón distinto de las temperaturas superficiales del mar en el medio del Océano Pacífico Norte puede predecir un mayor riesgo de olas de calor del verano en la mitad oriental de los EE.UU. hasta 50 días de antelación.
El patrón es un contraste de más cálido que el promedio de agua procedentes de mares fríos en contra de lo normal. Cuando aparece, las probabilidades de que el calor extremo se huelga durante una semana en particular - o incluso en un día en particular - puede más que el triple, dependiendo de lo bien formado es el patrón.
Los hallazgos fueron publicados en la revista Nature Geoscience. El autor principal es el científico Karen McKinnon, del Centro Nacional de Investigación Atmosférica (NCAR) en Boulder, Colorado.
"Olas de calor del verano se encuentran entre los fenómenos meteorológicos más mortales, y pueden tener grandes efectos sobre la agricultura, el uso de energía y otros aspectos críticos de la sociedad", dijo McKinnon. "Si podemos dar a los planificadores urbanos y los agricultores un mano a mano que el calor extremo se encuentra en el camino, que podría ser capaz de evitar algunas de las peores consecuencias."
More information.........
Pacific pattern forms in advance of hot days in eastern U.S.

cars in traffic on a highway and a big sun
Scientists have found a way of predicting an increased chance of a summer heat wave.
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March 28, 2016
This is part 14 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 15.
The formation of a distinct pattern of sea surface temperatures in the middle of the North Pacific Ocean can predict an increased chance of summer heat waves in the eastern half of the U.S. up to 50 days in advance.
The pattern is a contrast of warmer-than-average water coming up against cooler-than-average seas. When it appears, the odds that extreme heat will strike during a particular week -- or even on a particular day -- can more than triple, depending on how well-formed the pattern is.
The findings were published today in the journal Nature Geoscience. The lead author is scientist Karen McKinnon of the National Center for Atmospheric Research (NCAR) in Boulder, Colorado.
"Summertime heat waves are among the deadliest weather events, and can have big effects on farming, energy use and other critical aspects of society," said McKinnon. "If we can give city planners and farmers a heads-up that extreme heat is on the way, we might be able to avoid some of the worst consequences."
In addition to McKinnon, the research team includes Andrew Rhines of the University of Washington, Martin Tingley of Pennsylvania State University and Peter Huybers of Harvard University.
"This intriguing result has enormous practical implications," said Candace Major, program director in the National Science Foundation (NSF) Division of Ocean Sciences, which funded the research along with NSF's Division of Atmospheric and Geospace Sciences. "The potential for predicting the risk of dangerous heat waves more than a month in advance is very exciting. With more time to prepare, communities have a greater chance of avoiding the serious economic and health consequences of weather extremes."
 
A fingerprint on the ocean
 
For the study, the scientists divided the country into regions that tend to experience extreme heat at the same time. They then focused on the largest of the resulting blocks: a swath that stretches across much of the Midwest and up the East Coast, encompassing important agricultural areas and heavily populated cities.
The researchers looked for a relationship between global sea surface temperature anomalies -- waters warmer or cooler than average -- and extreme heat in the eastern half of the U.S.
A pattern popped out in the middle of the Pacific, above a point roughly 20 degrees north latitude. The scientists could find the particular configuration of ocean water temperatures, which they named the Pacific Extreme Pattern, not only when the eastern U.S. was already hot, but also in advance of that heat.
"Whatever mechanisms ultimately lead to the heat wave also leave a fingerprint of sea surface temperature anomalies behind," McKinnon said.
 
Improving seasonal forecasts
 
To test how well that activity could predict future heat, the scientists used data collected from 1,613 weather stations across the eastern U.S. between 1982 and 2015, as well as daily sea surface temperatures from the same time period.
The researchers defined extreme heat in the eastern U.S. as a summer day when the temperature readings from the warmest 5 percent of weather stations in the region were at least 6.5 degrees Celsius (11.7 degrees Fahrenheit) hotter than average. They only examined extreme heat during that region's 60 hottest days of the year: June 24 through Aug. 22.
The scientists "hindcasted" each year in the data set to see if they could retrospectively predict extreme heat events -- or the lack of those events -- during that year's summer.
At 50 days out, they were able to predict an increase in the odds -- from about one-in-six to about one-in-four -- that a heat wave would strike somewhere in the eastern U.S. during a given week.
For a particularly well-formed pattern, at 30 days out or closer the scientists were able to predict that a heat wave would strike on a particular day at odds of better than one-in-two.
This new technique could improve existing seasonal forecasts, which do not focus on predicting daily extremes. Seasonal forecasts typically predict whether an entire summer is expected to be warmer than normal, normal, or cooler than normal.
For example, the seasonal forecast issued for the summer of 2012 predicted normal heat for the Northeast and Midwest. But the summer ended up being especially hot, thanks to three major heat waves that struck in late June, mid-July and late July.
When the research team used the Pacific Extreme Pattern to hindcast 2012, they were able to determine as early as mid-May increased odds of extremely hot days occurring in late June.
The hottest day of the summer of 2012, as measured by the technique used for this study, was June 29, when the warmest 5 percent of weather stations recorded temperatures that were 10.4 degrees Celsius (18.7 degrees Fahrenheit) above average.
"We found that we could go back as far as seven weeks and still predict an increase in the odds of future heat waves," McKinnon said. "What's exciting about this is the potential for long-range predictions of individual heat waves that give society far more notice than current forecasts."
 
Looking ahead
 
Scientists don't yet know why the fingerprint of sea surface temperatures in the Pacific predicts heat on the East Coast.
It could be that the sea surface temperatures themselves kick off weather patterns that cause the heat. Or it could be that they are both different results of the same phenomenon, but one does not cause the other.
To learn more about how the two are connected, McKinnon is working with colleagues at NCAR to use sophisticated computer models to try to tease apart what's happening.
The study's findings also point to the possibility that the Pacific Extreme Pattern, or a different oceanic fingerprint, could be used to forecast other weather events far in advance, including cooler-than-average days and extreme rainfall events.
"The results suggest that the state of the mid-latitude ocean may be a previously overlooked source of predictability for summer weather," McKinnon said.
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734,
cdybas@nsf.gov
David Hosansky, NCAR, (303) 497-8611,
hosansky@ucar.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) 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:
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map of United States showing different temperatures in 2012
June 29, 2012, was the hottest day of the year in the eastern U.S.
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map showing the Pacific region with highlight of area with abnormal temperatures
Sea surface temperature anomalies in the mid-latitude Pacific 50 days out from June 29, 2012.
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heat map of the Chicago skyline
The summer of 2012 was a scorcher. Three heat waves struck the U.S.
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Heat waves affect energy use, farming and other aspects of society.
Heat waves affect energy use, farming and other aspects of society.
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Grasses become sere and brown in the baking summer sun.
Grasses become sere and brown in the baking summer sun.
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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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