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

viernes, 21 de octubre de 2016

NSF : Like hurricanes, unseasonable cold spells wipe out subtropical species .- Al igual que los huracanes, hechizos inusualmente frías acaban con especies subtropicales

https://www.nsf.gov/news/news_summ.jsp?cntn_id=189705&WT.mc_id=USNSF_51&WT.mc_ev=click

Extreme climate events leave areas vulnerable

Cold snaps affect the vulnerable subtropics

Photo gallery: Cold snaps affect the vulnerable subtropics
Credit and Larger Version

October 17, 2016
The following is part 22 in a series on the National Science Foundation's Long-Term Ecological Research (LTER) Network. Visit parts one, two, three, four, five, six, seven, eight, nine, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21 and 22.
Two cold spells, two years apart, in two subtropical regions of the world have given scientists clues about what happens when an extreme climate event strikes.
By tracking conditions before, during and after a 2008 cold spell in China and a 2010 cold spell in Florida, researchers found chilling effects on plants and animals, but not all the effects were equal.
Tropical species suffered more than their temperate counterparts, which were able to resist and recover from the record low temperatures.
 
Complex consequences
 
"Long-term ecological studies like these give us opportunities to understand the complex consequences of unanticipated events such as extreme cold snaps," said ecologist Evelyn Gaiser of Florida International University and principal investigator of the National Science Foundation (NSF) Florida Coastal Everglades Long-Term Ecological Research (LTER) site, one of a network of NSF LTER sites. "This short but extreme cold event mimicked the effects of a strong tropical storm or hurricane. The short-term consequences were different but the long-term conclusions were similar."
In South Florida, tropical fish populations declined, while populations of their temperate counterparts remained unchanged or increased following the 2010 cold spell.
Tropical American crocodiles declined, while temperate American alligators weathered the cold. Tropical mangroves died while temperate saltmarsh grasses survived.
In China, the population of tropical butterflies in the Nanling National Nature Preserve dropped by 80 percent following the cold spell there, allowing temperate butterflies to dominate the area for two years.
 
New insights
 
Florida researchers, along with others in the United States and China, have been conducting long-term research programs in these two regions.
With historic data in hand, they were able to act quickly when the cold snaps arrived -- evaluating conditions and local plants and animals long after temperatures returned to normal.
Their efforts are shared in a new, special issue of the journal Ecosphere, published by the Ecological Society of America.
"More frequent extreme weather is likely with climate change," said David Garrison, program director in NSF's Division of Ocean Sciences, which co-funds the LTER Program with NSF's Division of Environmental Biology. "These studies show that these extremes may be cold anomalies as well as warm ones."
 
Effects on species
 
Along with disrupting biodiversity, the 2010 cold spell affected Florida's fisheries.
Economically lucrative bonefish, snook and goliath grouper fisheries experienced mass mortalities, while others, including red drum and gray snapper, were not affected.
Some saw population increases after the cold spell passed, including redfish.
Non-native species proved to be less resistant to the cold spells than native species. Non-native bee populations in South Florida took nearly four years to recover, and some non-native fish have shown no meaningful population recovery to date.
The researchers stress the importance of using long-term data to understand how these species in the subtropics will react to and recover from extreme climate events, and to predict what the future will look like for them.
Not all populations resist and recover equally, scientists say, and conservation plans that incorporate strategies for extreme climate events could help those that are most vulnerable.
-NSF-
Media Contacts Cheryl Dybas, NSF, (703) 292-7734,
 cdybas@nsf.gov
Evelyn Gonzalez, FIU, (305) 348-4493,
Related WebsitesNSF LTER Network:
https://lternet.edu/
NSF LTER Discovery Article Series:
 https://www.nsf.gov/discoveries/disc_summ.jsp?cntn_id=138170


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.
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Mangroves at sunset in Florida's Shark River, before the unseasonable cold spell.
Credit and Larger Version
Red mangrove trees in creeks along the Shark River. Wading birds foraged on dying fish.
Red mangrove trees in creeks along the Shark River. Wading birds foraged on dying fish.
Credit and Larger Version
Non-native Mayan cichlid fish suffered major declines as a result of the extreme cold snap.
Non-native Mayan cichlid fish suffered major declines as a result of the extreme cold snap.
Credit and Larger Version
Florida's Tarpon Bay in the light of winter.
Florida's Tarpon Bay in the light of winter.
Credit and Larger Version
The freeze killed the tops of red mangrove trees along the Shark River shoreline.
The freeze killed the tops of red mangrove trees along the Shark River shoreline.
Credit and Larger Version
A fish kill in Whitewater Bay, Florida, a few days after the extreme cold settled in.
A fish kill in Whitewater Bay, Florida, a few days after the extreme cold settled in.
Credit and Larger Versión
The National Science Foundation (NSF)
Guillermo Gonzalo Sánchez Achutegui
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viernes, 1 de abril de 2016

NASA : Greenland's Ice Sheet From 40,000 Feet .- Capa de hielo de Groenlandia de 40.000 pies

Hola amigos: A VUELO DE UN QUINDE EL BLOG.,  The Oceans Melting Greenland (OMG) field : El equipo de campaña de campo está volando la aeronave G-III de la NASA en cerca de 40.000 pies. En un día claro, esta altitud también proporciona una perspectiva impresionante de uno de los dos grandes capas de hielo del mundo (la otra es la Antártida). El vuelo sábado por la 26 de marzo sobre la costa noreste era uno de esos días claros.
El equipo de OMG es ahora sólo unos pocos vuelos de distancia de la cartografía de las alturas de los glaciares alrededor de toda la costa de Groenlandia. Estas medidas formarán la base de este primero de su clase experimento, aclarar la imagen de cómo los glaciares de Groenlandia están respondiendo a un momento en que muchas señales apuntan a que la aceleración del cambio
More information.............
http://www.nasa.gov/image-feature/greenlands-ice-sheet-from-40000-feet

Ice sheet of Greenland photographed from aircraft
The Oceans Melting Greenland (OMG) field campaign team is flying NASA’s G-III aircraft at about 40,000 feet. On a clear day, this altitude also provides a stunning perspective of one of the world’s two great ice sheets (the other is Antarctica). The flight Saturday, March 26, over the northeast coastline was one of those clear days.

The OMG team is now just a few flights away from mapping glacier heights around the entire coast of Greenland. These measurements will form the baseline of this first-of-its-kind experiment, clarifying the picture of how Greenland’s glaciers are responding at a time when many signs point to accelerating change.

OMG will pave the way for improved estimates of sea level rise by investigating the extent to which the oceans are melting Greenland’s ice. OMG will observe changing water temperatures and glaciers that reach the ocean around all of Greenland from 2015 to 2020.
Image Credit: NASA
Last Updated: March 29, 2016
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
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ayabaca@hotmail.com
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viernes, 22 de enero de 2016

Earth's Long-Term Warming Trend, 1880-2015.- NASA, NOAA Analyses Reveal Record-Shattering Global Warm Temperatures in 2015 .- NASA, la NOAA Los análisis revelan Record-Devastación Global temperaturas cálidas en 2015


This visualization illustrates Earth’s long-term warming trend, showing temperature changes from 1880 to 2015 as a rolling five-year average. Orange colors represent temperatures that are warmer than the 1951-80 baseline average, and blues represent temperatures cooler than the baseline.
Credits: GSFC Scientific Visualization Studio
 
More information........

Most of the warming occurred in the past 35 years, with 15 of the 16 warmest years on record occurring since 2001. Last year was the first time the global average temperatures were 1 degree Celsius or more above the 1880-1899 average.

Phenomena such as El Niño or La Niña, which warm or cool the tropical Pacific Ocean, can contribute to short-term variations in global average temperature. A warming El Niño was in effect for most of 2015.

“2015 was remarkable even in the context of the ongoing El Niño,” said GISS Director Gavin Schmidt. “Last year’s temperatures had an assist from El Niño, but it is the cumulative effect of the long-term trend that has resulted in the record warming that we are seeing.”

Weather dynamics often affect regional temperatures, so not every region on Earth experienced record average temperatures last year. For example, NASA and NOAA found that the 2015 annual mean temperature for the contiguous 48 United States was the second warmest on record.

NASA’s analyses incorporate surface temperature measurements from 6,300 weather stations, ship- and buoy-based observations of sea surface temperatures, and temperature measurements from Antarctic research stations. These raw measurements are analyzed using an algorithm that considers the varied spacing of temperature stations around the globe and urban heating effects that could skew the conclusions if left unaccounted for. The result of these calculations is an estimate of the global average temperature difference from a baseline period of 1951 to 1980.

NOAA scientists used much of the same raw temperature data, but a different baseline period, and different methods to analyze Earth’s polar regions and global temperatures.

GISS is a NASA laboratory managed by the Earth Sciences Division of the agency’s Goddard Space Flight Center in Greenbelt, Maryland. The laboratory is affiliated with Columbia University’s Earth Institute and School of Engineering and Applied Science in New York.

NASA monitors Earth's vital signs from land, air and space with a fleet of satellites, as well as airborne and ground-based observation campaigns. The agency develops new ways to observe and study Earth's interconnected natural systems with long-term data records and computer analysis tools to better see how our planet is changing. NASA shares this unique knowledge with the global community and works with institutions in the United States and around the world that contribute to understanding and protecting our home planet.

NASA, NOAA Analyses Reveal Record-Shattering Global Warm Temperatures in 2015

2015 Global Temperatures
2015 was the warmest year since modern record-keeping began in 1880, according to a new analysis by NASA’s Goddard Institute for Space Studies. The record-breaking year continues a long-term warming trend — 15 of the 16 warmest years on record have now occurred since 2001.
Credits: Scientific Visualization Studio/Goddard Space Flight Center
 
Earth’s 2015 surface temperatures were the warmest since modern record keeping began in 1880, according to independent analyses by NASA and the National Oceanic and Atmospheric Administration (NOAA).

Globally-averaged temperatures in 2015 shattered the previous mark set in 2014 by 0.23 degrees Fahrenheit (0.13 Celsius). Only once before, in 1998, has the new record been greater than the old record by this much.

The 2015 temperatures continue a long-term warming trend, according to analyses by scientists at NASA’s Goddard Institute for Space Studies (GISS) in New York (GISTEMP). NOAA scientists concur with the finding that 2015 was the warmest year on record based on separate, independent analyses of the data. Because weather station locations and measurements change over time, there is some uncertainty in the individual values in the GISTEMP index. Taking this into account, NASA analysis estimates 2015 was the warmest year with 94 percent certainty. 

“Climate change is the challenge of our generation, and NASA’s vital work on this important issue affects every person on Earth,” said NASA Administrator Charles Bolden. “Today’s announcement not only underscores how critical NASA’s Earth observation program is, it is a key data point that should make policy makers stand up and take notice - now is the time to act on climate.”

The planet’s average surface temperature has risen about 1.8 degrees Fahrenheit (1.0 degree Celsius) since the late-19th century, a change largely driven by increased carbon dioxide and other human-made emissions into the atmosphere.

The full 2015 surface temperature data set and the complete methodology used to make the temperature calculation are available at:


The slides for the Wednesday, Jan. 20 news conference are available at:


For more information about NASA's Earth science activities, visit:


-end-
Dwayne Brown
Headquarters, Washington
202-358-1726
dwayne.c.brown@nasa.gov

Michael Cabbage / Leslie McCarthy
Goddard Institute for Space Studies, New York
212-678-5516 / 5507
mcabbage@nasa.gov / leslie.m.mccarthy@nasa.gov
Last Updated: Jan. 20, 2016
Editor: Karen Northon
NASA
Guillermo Gonzalo Sánchez Achutegui
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