Mostrando entradas con la etiqueta the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER). Mostrar todas las entradas
Mostrando entradas con la etiqueta the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER). Mostrar todas las entradas

domingo, 20 de diciembre de 2015

NASA : Study Shows Climate Change Rapidly Warming World’s Lakes.- Un estudio muestra que el cambio climático rápido calentamiento Lagos del mundo

Hola amigos: A VUELO DE UN QUINDE EL BLOG., El uso de más de 25 años de datos de temperatura por satélite y las mediciones de tierra de 235 lagos en seis continentes, este estudio - la más grande de su tipo - Se encuentra lagos están calentando un promedio de 0,61 grados Fahrenheit (0.34 grados Celsius) cada década. Los científicos dicen que es mayor que la tasa de calentamiento de cualquiera de los océanos o la atmósfera, y puede tener efectos profundos.
More information.....

Lake Tahoe
A combination of satellite data and ground measurements, such as from instrumented buoys like this one in Lake Tahoe on the California/Nevada border, were used to provide a comprehensive view of changing lake temperatures worldwide. The buoy measures the water temperature from above and below.
Credits: Limnotech
 
Climate change is rapidly warming lakes around the world, threatening freshwater supplies and ecosystems, according to a new NASA and National Science Foundation-funded study of more than half of the world’s freshwater supply.

Lake temperature variations
This image of Lake Tahoe, from the ASTER instrument on Terra, shows the lake’s temperature variations (cold is blue, warm is red).
Credits: NASA
 
Using more than 25 years of satellite temperature data and ground measurements of 235 lakes on six continents, this study -- the largest of its kind -- found lakes are warming an average of 0.61 degrees Fahrenheit (0.34 degrees Celsius) each decade. The scientists say this is greater than the warming rate of either the ocean or the atmosphere, and it can have profound effects.

The research, published in Geophysical Research Letters, was announced Wednesday at the American Geophysical Union meeting in San Francisco.

As warming rates increase over the next century, algal blooms, which can rob water of oxygen, are projected to increase 20 percent in lakes. Algal blooms that are toxic to fish and animals are expected to increase by 5 percent. Emissions of methane, a greenhouse gas 25 times more powerful than carbon dioxide on 100-year time scales, will increase 4 percent over the next decade, if these rates continue.

“Society depends on surface water for the vast majority of human uses,” said co-author Stephanie Hampton, director of Washington State University’s Center for Environmental Research, Education and Outreach in Pullman. “Not just for drinking water, but manufacturing, for energy production, for irrigation of our crops. Protein from freshwater fish is especially important in the developing world.”

Water temperature influences a host of its other properties critical to the health and viability of ecosystems. When temperatures swing quickly and widely from the norm, life forms in a lake can change dramatically and even disappear.

“These results suggest that large changes in our lakes are not only unavoidable, but are probably already happening,” said lead author Catherine O'Reilly, associate professor of geology at Illinois State University, Normal. Earlier research by O’Reilly has seen declining productivity in lakes with rising temperatures.

Study co-author Simon Hook, science division manager at NASA’s Jet Propulsion Laboratory (JPL) in Pasadena, California, said satellite measurements provide a broad view of lake temperatures over the entire globe. But they only measure surface temperature, while ground measurements can detect temperature changes throughout a lake. Also, while satellite measurements go back 30 years, some lake measurements go back more than a century.

Global lake temperature map
Global changes in lake temperatures over the past 25 years. Red shades indicate warming; blue shades indicate cooling. The study found Earth’s lakes are warming about 0.61 degrees Fahrenheit (0.34 degrees Celsius) per decade on average, faster than overall warming rates for the ocean and atmosphere.
Credits: Illinois State University/USGS/California University of Pennsylvania
 
“Combining the ground and satellite measurements provides the most comprehensive view of how lake temperatures are changing around the world,” he said.

The researchers said various climate factors are associated with the warming trend. In northern climates, lakes are losing their ice cover earlier in the spring and many areas of the world have less cloud cover, exposing their waters more to the sun’s warming rays.

Previous work by Hook, using satellite data, indicated many lake temperatures were warming faster than air temperature and that the greatest warming was observed at high latitudes, as seen in other climate warming studies. This new research confirmed those observations, with average warming rates of 1.3 degrees Fahrenheit (0.72 degrees Celsius) per decade at high latitudes.

Warm-water tropical lakes may be seeing less dramatic temperature increases, but increased warming of these lakes still can have significant negative impacts on fish. That can be particularly important in the African Great Lakes, where fish are a major source of food.

“We want to be careful that we don’t dismiss some of these lower rates of change,” said Hampton. “In warmer lakes, those temperature changes can be really important. They can be just as important as a higher rate of change in a cooler lake.”

In general, the researchers write, “The pervasive and rapid warming observed here signals the urgent need to incorporate climate impacts into vulnerability assessments and adaptation efforts for lakes.”

NASA uses the vantage point of space to increase our understanding of our home planet, improve lives and safeguard our future. NASA develops new ways to observe and study Earth's interconnected natural systems with long-term data records. The agency freely shares this unique knowledge and works with institutions around the world to gain new insights into how our planet is changing.
For more information about NASA's Earth science activities, visit:
-end-
Steve Cole
Headquarters, Washington
202-358-0918
stephen.e.cole@nasa.gov

Alan Buis
Jet Propulsion Laboratory, Pasadena, Calif.
818-354-0474
alan.buis@jpl.nasa.gov

Eric Sorensen
Washington State University, Pullman
509-335-4846
eric.sorensen@wsu.edu
Last Updated: Dec. 16, 2015
Editor: Sarah Ramsey
Tags:  Earth, Water,
NASA
Guillermo Gonzalo Sánchez Achutegui
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martes, 19 de mayo de 2015

NASA : Mount St. Helens at 35

Hola  Amigos:A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia Espacial NASA:  El 18 de mayo de 1980, el Monte St. Helens dio paso a un colapso catastrófico flanco, avalancha, y la explosión que mató a 57 personas y muchas otras personas desplazadas. El evento reformó drásticamente el volcán y la tierra circundante en el suroeste de Washington.
Ahora, 35 años más tarde, los satélites en órbita y científicos sobre el terreno todavía vigilan la montaña y hacer un seguimiento de su recuperación. La imagen de arriba muestra una vista tridimensional de la montaña, mirando hacia el sureste, ya que apareció el 30 de abril de 2015. La imagen se monta a partir de los datos adquiridos por el Operativo Land Imager en Landsat 8 y el espacial avanzado de emisiones y reflexión Radiometer (ASTER) en Terra.
Flanco norte de la montaña era el lugar de la caída y explosión lateral que devastó 390 kilómetros cuadrados (150 millas cuadradas) del paisaje
 
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Mount St. Helens at 35

Overhead three dimensional view of Mt. Saint Helens
On May 18, 1980, Mount St. Helens gave way to a cataclysmic flank collapse, avalanche, and explosion that killed 57 people and displaced many others. The event dramatically reshaped the volcano and surrounding land in southwest Washington.
Now, 35 years later, satellites in orbit and scientists on the ground still monitor the mountain and track its recovery. The image above shows a three-dimensional view of the mountain, looking toward the southeast, as it appeared on April 30, 2015. The image was assembled from data acquired by the Operational Land Imager on Landsat 8 and the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) on Terra.
The mountain’s north flank was the site of the collapse and lateral explosion that devastated 390 square kilometers (150 square miles) of the landscape.

Additional images and information: NASA Earth Observatory
Image Credit: NASA Earth Observatory image by Jesse Allen and Joshua Stevens, using Landsat data from the U.S. Geological Survey and ASTER GDEM2 data from NASA/GSFC/METI/ERSDAC/JAROS, and U.S./Japan ASTER Science Team
Caption: Kathryn Hansen

Last Updated: May 19, 2015
Editor: Sarah Loff
Tags:  Earth, Hazards, Image of the Day, Terra Satellite
 NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.ccom
ayabaca@hotmail.com
ayabaca@yahoo.com 
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viernes, 23 de enero de 2015

NASA : Greenland's Leidy Glacier

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia del Espacio NASA, sobre la localización del Glaciar Leidy, en Groelandia.
NASA, nos dice : "Ubicado en la esquina noroeste de Groenlandia, el glaciar Leidy se alimenta por el hielo del Glaciar Academia (aguas arriba y aguas continentales). Como Leidy acerca al mar, se desvía alrededor de la punta de una isla que separa el fiordo Olriks al sur y Academia Cove hacia el norte. El patrón resultante se entrecruzan es simplemente el resultado de hielo que fluye a lo largo del camino de la menor resistencia...."
NASA, agrega :" Esta visión de la región de la foto de arriba fue adquirido 07 de agosto 2012, por el: the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER)  del satélite Terra de la NASA. En abril de 2012, la característica llamó la atención de un piloto de la NASA, que tomó esta foto desde la cabina de un avión de alto vuelo ER-2 durante un vuelo de la investigación sobre la capa de hielo de Groenlandia...."

Greenland's Leidy Glacier
Located in the northwest corner of Greenland, Leidy Glacier is fed by ice from the Academy Glacier (upstream and inland). As Leidy approaches the sea, it is diverted around the tip of an island that separates the Olriks Fjord to the south and Academy Cove to the north. The resulting crisscross pattern is simply the result of ice flowing along the path of least resistance.
This view of the region pictured above was acquired August 7, 2012, by the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) on NASA's Terra satellite. In April 2012, the feature caught the attention of a NASA pilot, who snapped this picture from the cockpit of a high-flying ER-2 aircraft during a research flight over the Greenland ice cap.
Image Credit: NASA/Terra
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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viernes, 7 de febrero de 2014

NASA : Sochi, Russia Winter Olympic Sites (Mountain Cluster)


Sochi, Russia Winter Olympic Sites (Mountain Cluster)
The 2014 Winter Olympic ski runs may be rated double black diamond, but they're not quite as steep as they appear in this image of the skiing and snowboarding sites for the Sochi Winter Olympic Games, acquired on Jan. 4, 2014, by the Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) instrument on NASA's Terra spacecraft. Rosa Khutar ski resort near Sochi, Russia, is in the valley at center, and the runs are visible on the shadowed slopes on the left-hand side of the valley. Height has been exaggerated 1.5 times to bring out topographic details. The games, which begin on Feb. 7 and continue for 17 days, feature six new skiing and boarding events plus the return of the legendary Jamaican bobsled team to the winter games for the first time since 2002.
In this southwest-looking image, red indicates vegetation, white is snow, and the resort site appears in gray. The area imaged is about 11 miles (18 kilometers) across in the foreground and 20 miles (32 kilometers) from front to back. The image was created from the ASTER visible and near-infrared bands, draped over ASTER-derived digital elevation data.
With its 14 spectral bands from the visible to the thermal infrared wavelength region and its high spatial resolution of 15 to 90 meters (about 50 to 300 feet), ASTER images Earth to map and monitor the changing surface of our planet. ASTER is one of five Earth-observing instruments launched Dec. 18, 1999, on Terra. The instrument was built by Japan's Ministry of Economy, Trade and Industry. A joint U.S./Japan science team is responsible for validation and calibration of the instrument and data products.
The broad spectral coverage and high spectral resolution of ASTER provides scientists in numerous disciplines with critical information for surface mapping and monitoring of dynamic conditions and temporal change. Example applications are: monitoring glacial advances and retreats; monitoring potentially active volcanoes; identifying crop stress; determining cloud morphology and physical properties; wetlands evaluation; thermal pollution monitoring; coral reef degradation; surface temperature mapping of soils and geology; and measuring surface heat balance.
The U.S. science team is located at NASA's Jet Propulsion Laboratory, Pasadena, Calif. The Terra mission is part of NASA's Science Mission Directorate, Washington, D.C. ;More information about ASTER is available at asterweb.jpl.nasa.gov/.
Image Credit: NASA/GSFC/METI/ERSDAC/JAROS, and U.S./Japan ASTER Science Team

NASA
Guillermo Gonzalo Sánchez Achutegui

domingo, 9 de junio de 2013

NASA - Infrared Light Reveals Tornado's Path





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Guillermo Gonzalo Sánchez Achutegui
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