Mostrando entradas con la etiqueta NASA's Landsat Data Continuity Mission (LDCM). Mostrar todas las entradas
Mostrando entradas con la etiqueta NASA's Landsat Data Continuity Mission (LDCM). Mostrar todas las entradas

sábado, 25 de marzo de 2017

NASA : Mackenzie River in Canada's Northwest Territories .- Río Mackenzie en los Territorios del Noroeste de Canadá

https://www.nasa.gov/image-feature/mackenzie-river-in-canadas-northwest-territories
     
Satellite view of frozen river system in Canada
This view, acquired on Nov. 7, 2016, by the Operational Land Imager (OLI) on Landsat 8, shows a portion of Canada's Mackenzie River Delta and the town of Inuvik, home to more than 3,000 people. A frozen highway -- 194 kilometers (120 miles) long -- runs between the remote outposts of Inuvik and Tuktoyaktuk along the river’s East Channel. White, snow-and-ice covered waterways stand out amid green, pine-covered land. The low angle of the sunlight bathes the higher elevations in golden light.
The Mackenzie River system is Canada’s largest watershed, and the tenth largest water basin in the world. The river runs 4,200 kilometers (2,600 miles) from the Columbia Icefield in the Canadian Rockies to the Arctic Ocean.
Every so often, flooding from the Mackenzie River replenishes the surrounding lakes. A 1950s-era map of the area indicates that its landforms have not changed much since then. However, parts of the watershed sit atop permafrost, which makes the area vulnerable to climate change.
The pond- and lake-covered lands around the river are home to caribou, waterfowl, and a number of fish species. Several thousand reindeer travel through this area each year on the way to their calving grounds.
Image Credit: NASA Earth Observatory images by Joshua Stevens, using Landsat data from the U.S. Geological Survey
Caption: Pola Lem
Last Updated: March 20, 2017
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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miércoles, 1 de marzo de 2017

NASA : Glaciers Ebb on South Georgia Island .-Glaciares de Ebb en la isla de Georgia del Sur

https://www.nasa.gov/image-feature/glaciers-ebb-on-south-georgia-island
Georgia Island
closeup satellite image of sub-Antarctic island with glaciers
Frequent cloud cover in the southern Atlantic Ocean often obscures satellite images of South Georgia and the South Sandwich Islands. But occasionally the clouds give way. On September 14, 2016, the Operational Land Imager (OLI) on Landsat 8 captured natural-color images of South Georgia Island, where several glaciers are in retreat.

The image above, a closer crop of a Landsat scene, shows Neumayer Glacier. In the past 16 years, Neumayer has retreated more than 4 kilometers (2.5 miles). Like other large glaciers on the island, Neumayer is a tidewater glacier—that is, it flows down into the ocean. Roughly 30 kilometers (20 miles) to the southeast of Neumayer, on the same side of the island, Hindle Glacier has also retreated markedly since 2000—more than 3 kilometers (2 miles). Like Neumayer, Hindle used to merge with another glacier (Ross).
Image Credit: NASA Earth Observatory images by Joshua Stevens, using Landsat data from the U.S. Geological Survey
Caption: Pola Lem
Last Updated: Feb. 28, 2017
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 16 de noviembre de 2014

NASA: Exploring the World's Protected Areas from Space.- Exploración de Áreas protegidas del mundo desde el espacio

Hola amigos: A VUELO DE UN QUINDE EL BLOG., la Agencia Espacial NASA, nos informa sobre la captación maravillosa de imágenes desde el espacio a al Tierra, tales como El Parque Nacional Egmont en Nueva Zelanda,
 
NASA, nos dice: ..."Un nuevo libro publicado esta semana pone de relieve cómo se está utilizando la vista desde el espacio con sensores que orbitan la Tierra para proteger a algunos de los más interesantes del mundo, el cambio, y  lugares amenazados . Desde el espacio, el Parque Nacional Egmont en Nueva Zelanda muestra los beneficios y limitaciones de las áreas protegidas. En esta imagen del Landsat 8 adquirió el 3 de julio de 2014, el parque, con el Monte Taranaki en su centro, se estableció en 1900. Esta isla aislada de bosque protegido (zonas de color verde oscuro) está rodeada de pastizales otrora boscosas (marrón claro y verde)....."

Exploring the World's Protected Areas from Space
A new book released this week highlights how the view from space with Earth-orbiting sensors is being used to protect some of the world’s most interesting, changing, and threatened places. From space, Egmont National Park in New Zealand shows the benefits and limitations of protected areas. In this Landsat 8 image acquired on July 3, 2014, the park, with Mt. Taranaki at its center, was established in 1900. This isolated island of protected forest (dark green areas) is surrounded by once-forested pasturelands (light and brown green).
“Sanctuary: Exploring the World’s Protected Areas from Space,” published by the Institute for Global Environmental Strategies (Arlington, Virginia) with support from NASA, debuted at the 2014 World Parks Congress in Sydney, Australia. In the book’s foreword, NASA Administrator Charles Bolden writes, “NASA and numerous other space agency partners from around the globe have used this view from space to make incredible scientific advances in our understanding of how our planet works. As a result, we can now better gauge the impact of human activity on our environment and measure how and why our atmosphere, oceans, and land are changing. As a former astronaut who has looked upon our beautiful planet from space, I hope that we can advance the use of space-based remote sensing and other geospatial tools to study, understand, and improve the management of the world’s parks and protected areas as well as the precious biodiversity that thrives within their borders.”
Image Credit: NASA/USGS
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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martes, 10 de diciembre de 2013

NASA : NASA-USGS Landsat 8 Satellite Pinpoints Coldest Spots on Earth


What is the coldest place on Earth? It is a high ridge in Antarctica on the East Antarctic Plateau where temperatures in several hollows can dip below minus 133.6 degrees Fahrenheit (minus 92 degrees Celsius) on a clear winter night.
Scientists made the discovery while analyzing the most detailed global surface temperature maps to date, developed with data from remote sensing satellites including the new Landsat 8, a joint project of NASA and the U.S. Geological Survey (USGS). Ted Scambos, lead scientist at the National Snow and Ice Data Center in Boulder, Colo., joined a team of researchers reporting the findings Monday at the American Geophysical Union meeting in San Francisco.

Youtube Override:
The coldest place on earth is in the East Antarctic Plateau, but not at the highest peak. Rather, the coldest spots develop just downhill from a ridge that runs from Dome A to Dome Fuji. Data from NASA-USGS Landsat 8 satellite, and NASA's MODIS sensor on the Aqua satellite.
Image Credit: NASA's Goddard Space Flight Center
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Feature Link:
 
Researchers analyzed 32 years' worth of data from several satellite instruments. They found temperatures plummeted to record lows dozens of times in clusters of pockets near a high ridge between Dome Argus and Dome Fuji, two summits on the ice sheet known as the East Antarctic Plateau. The new record of minus 136 F (minus 93.2 C) was set Aug. 10, 2010.
That is several degrees colder than the previous low of minus 128.6 F (minus 89.2 C), set in 1983 at the Russian Vostok Research Station in East Antarctica. The coldest permanently inhabited place on Earth is northeastern Siberia, where temperatures in the towns of Verkhoyansk and Oimekon dropped to a bone-chilling 90 degrees below zero Fahrenheit (minus 67.8 C) in 1892 and 1933, respectively.
"We had a suspicion this Antarctic ridge was likely to be extremely cold, and colder than Vostok because it's higher up the hill," Scambos said. "With the launch of Landsat 8, we finally had a sensor capable of really investigating this area in more detail."
The quest to find out just how cold it can get on Earth -- and why -- started when the researchers were studying large snow dunes, sculpted and polished by the wind, on the East Antarctic Plateau. When the scientists looked closer, they noticed cracks in the snow surface between the dunes, possibly created when wintertime temperatures got so low the top snow layer shrunk. This led scientists to wonder what the temperature range was, and prompted them to hunt for the coldest places using data from two types of satellite sensors.

Youtube Override:
This narrated animation shows the process by which the coldest place on Earth develops its extreme low temperatures.
Image Credit: NASA's Goddard Space Flight Center
Image Token:
They turned to the Moderate Resolution Imaging Spectroradiometer (MODIS) instruments on NASA's Terra and Aqua satellites and the Advanced Very High Resolution Radiometer (AVHRR) on several National Oceanic and Atmospheric Administration satellites. These sensitive instruments can pick up thermal radiation emitted from Earth's surface, even in areas lacking much heat.
Using these sensors to scan the East Antarctic Plateau, Scambos detected extremely cold temperatures on a 620-mile stretch of the ridge at high elevations between Argus and Fuji, and even colder temperatures lower elevations in pockets off the ridge. Then, with the higher resolution of the Thermal Infrared Sensor (TIRS) aboard Landsat 8, the research team pinpointed the record-setting pockets.
The team compared the sites to topographic maps to explore how it gets so cold. Already cold temperatures fall rapidly when the sky clears. If clear skies persist for a few days, the ground chills as it radiates its remaining heat into space. This creates a layer of super-chilled air above the surface of the snow and ice. This layer of air is denser than the relatively warmer air above it, which causes it to slide down the shallow slope of domes on the Antarctic plateau. As it flows into the pockets, it can be trapped, and the cooling continues.
"By causing the air to be stationary for extended periods, while continuing to radiate more heat away into space, you get the absolute lowest temperatures we're able to find," Scambos said. "We suspected that we would be looking for one magical site that got extremely cold, but what we found was a large strip of Antarctica at high altitude that regularly reached these record low temperatures."
The study is an example of some of the intriguing science possible with Landsat 8 and the TIRS instrument, which was built at NASA’s Goddard Space Flight Center in Greenbelt, Md. Since its launch Feb. 11, Landsat 8 has captured approximately 550 scenes per day of Earth's land surface. USGS processes, archives and distributes the images free of charge over the Internet.

map of Antarctica with temperature readings indicated
With remote-sensing satellites, scientists have found the coldest places on Earth, just off a ridge in the East Antarctic Plateau. The coldest of the cold temperatures dropped to minus 135.8 F (minus 93.2 C) -- several degrees colder than the previous record.
Image Credit: Ted Scambos, National Snow and Ice Data Center
Image Token:
"With Landsat 8, we expect to see more accurate and more detailed maps of the landscape than we've ever been able to see," said James Irons, the mission's project scientist at Goddard. "If change is occurring, I think we'll be able to detect it earlier and track it."
Researchers also are eager to see what new results come out of Landsat 8, both from icy plateaus and Earth's warmer regions.
"What we've got orbiting Earth right now is a very accurate and consistent sensor that can tell us all kinds of things about how the land surface of Earth is changing, how climate change is impacting the surface of Earth, the oceans of Earth, and the icy areas of Earth," Scambos said. "Finding the coldest areas on Earth is just the beginning of the discoveries we're going to be able to make with Landsat 8."
Related Link

Text issued as NASA Headquarters release No. 13-364
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 17 de noviembre de 2013

NASA : NASA-USGS Landsat Data Yield Best View to Date of Global Forest Losses, Gains


The ravages of deforestation, wildfires, windstorms and insects on global forests during this century are revealed in unprecedented detail in a new study based on data from the NASA-U.S. Geological Survey Landsat 7 satellite.
The maps resulting from the study are the first to document forest loss and gain using a consistent method around the globe, at high resolution. They allow scientists to compare forest changes in different countries and monitor annual deforestation. With each pixel in a Landsat image showing an area about the size of a baseball diamond, researchers see enough detail to tell local, regional and global stories.
“Now, we have 12 years of annual forest loss over the globe,” said Matthew Hansen, whose team at the University of Maryland in College Park, Md., led the new study.
 
Youtube Override:
Twelve years of global deforestation, wildfires, windstorms, insect infestations and more are captured in a new set of forest disturbance maps created from billions of pixels acquired by the Landsat 7 satellite.
Image Credit: NASA Goddard, based on data from Hansen et al., 2013.
Image Token:
Feature Link:
Hansen and colleagues analyzed 143 billion pixels in 654,000 Landsat images to compile maps of forest loss and gain between 2000 and 2012. During that period, 888,000 square miles (2.3 million square kilometers) of forest were lost, and 309,000 square miles (800,000 square kilometers) regrew. The researchers, including scientists from the University of Maryland, Google, the State University of New York, Woods Hole Research Center, the U.S. Geological Survey (USGS) and South Dakota State University, published their work in the Nov. 15 issue of the journal Science.
Key to the project was collaboration with team members from Google Earth Engine, who reproduced in the Google Cloud the models developed at the University of Maryland for processing and characterizing the Landsat data.
map of global forest cover and changes since 2000
Using Landsat imagery and cloud computing, researchers mapped forest cover worldwide as well as forest loss and gain. Over 12 years, 888,000 square miles (2.3 million square kilometers) of forest were lost, and 309,000 square miles (800,000 square kilometers) regrew.
Image Credit: NASA Goddard, based on data from Hansen et al., 2013.
Image Token:
During the study period, Brazil cut its deforestation rate from approximately 15,400 square miles (40,000 square kilometers) per year to approximately 7,700 square miles (20,000 square kilometers) per year.
"That's the result of a concerted policy effort to reduce deforestation, and it sets a standard for the rest of the world," Hansen said.
The team found that the deforestation rate in other countries increased. Indonesia's deforestation rate doubled in the study period, from approximately 3,900 square miles (10,000 square kilometers) per year in 2000-2003 to more than 7,700 square miles (20,000 square kilometers) in 2011-2012.
forest map of border region between Malaysia and Indonesia
The border between Malaysia and Indonesia on the island of Borneo stands out in the Landsat-based map of forest disturbance. Red pixels represent forest loss between 2000 and 2012.
Image Credit: NASA Goddard, based on data from Hansen et al., 2013.
Image Token:
Prior to this study, country-to-country comparisons of forestry data were not possible at this level of accuracy. Different countries define forests differently, making previous global comparisons difficult with existing inventories.
"When you put together datasets that employ different methods and definitions, it's hard to synthesize," Hansen said. "But with Landsat, as a polar-orbiting instrument that takes the same quality pictures everywhere, we can apply the same algorithm to forests in the Amazon, in the Congo, in Indonesia, and so on. It's a huge improvement in our global monitoring capabilities."
"Since the first Landsat satellite launched 41 years ago, scientists have been improving their land cover analysis as computers have become more powerful," said Jeff Masek, Landsat project scientist at NASA's Goddard Space Flight Center in Greenbelt, Md. "Projects like Hansen's took a big leap forward once USGS made the data freely available on the Internet in 2008."
"This is the first time somebody has been able to do a wall-to-wall, global Landsat analysis of all the world's forests -- where they're being cleared, where they're regrowing, and where they're subject to natural disturbances," Masek said, noting that the maps could be routinely updated to aid in carbon accounting and other studies of land cover change.
The maps also illustrate the impact of politics on land cover. On the island of Borneo, the maps clearly show the border between Malaysia and Indonesia. Malaysia's heavy logging along forest roads is visible right up to the Indonesian border, where forests were still largely intact as of 2012. In Côte d'Ivoire, a civil war in 2002 corresponded with intense deforestation of several previously protected nature reserves.
forest map of Liberia and Côte d'Ivoire
Civil unrest in Côte d'Ivoire was associated with widespread deforestation in national parks, including Marahoué National Park. Other protected areas, such as Tai National Park, remained intact.
Image Credit: NASA Goddard, based on data from Hansen et al., 2013.
Image Token:
A different pattern of change appears in the southeastern U.S., where landowners harvest trees for timber and quickly plant their replacements.
"Of this eco-region in the southeast, 30 percent of the forest land was regrown or lost during this period," Hansen said. "It's incredibly intensive. Trees are really treated like a crop in this region."
forest map showing 2011 tornado path in Alabama
The forest cover maps also capture natural disturbances such as this 2011 tornado path in Alabama. In this map, the colors represent forest loss by year, with yellows representing loss closer to 2000 and reds representing later forest loss, up to 2012.
Image Credit: NASA Goddard, based on data from Hansen et al., 2013.
Image Token:
In Alabama, Landsat also detected miles-long streaks of destroyed forest. When the researchers examined the year-by-year record, they found the damage occurred in 2011 after a violent tornado season.
Since 1972, the Landsat program has played a critical role in monitoring, understanding and managing the resources needed to sustain human life such as food, water and forests. Landsat 8 was launched Feb. 11 and is managed jointly by NASA and USGS to continue the 40-plus years of Earth observations.
To view the forest cover maps in Google Earth Engine, visit:
For more information about the Landsat satellites, visit:

Kate Ramsayer
NASA's Goddard Space Flight Center, Greenbelt, Md.


NASA-USGS Landsat Data Yield Best View to Date of Global Forest Losses, Gains


The ravages of deforestation, wildfires, windstorms, and insects on global forests during this century are revealed in unprecedented detail in a new study based on data from the NASA-U.S. Geological Survey Landsat 7 satellite.
The maps resulting from the study are the first to document forest loss and gain using a consistent method around the globe, at high resolution. They allow scientists to compare forest changes in different countries and monitor annual deforestation. With each pixel in a Landsat image showing an area about the size of a baseball diamond, researchers see enough detail to tell local, regional and global stories.
Prior to this study, country-to-country comparisons of forestry data were not possible at this level of accuracy. Different countries define forests differently, making previous global comparisons difficult with existing inventories.
"When you put together datasets that employ different methods and definitions, it's hard to synthesize," said Matthew Hansen, whose team at the University of Maryland in College Park, Md., led the new study. "But with Landsat, as a polar-orbiting instrument that takes the same quality pictures everywhere, we can apply the same algorithm to forests in the Amazon, in the Congo, in Indonesia, and so on. It's a huge improvement in our global monitoring capabilities."
Hansen and colleagues analyzed 143 billion pixels in 654,000 Landsat images to compile maps of forest loss and gain between 2000 and 2012. During that period, 888,000 square miles (2.3 million square kilometers) of forest were lost, and 309,000 square miles (800,000 square kilometers) regrew. The researchers, including scientists from the University of Maryland, Google, the State University of New York, Woods Hole Research Center, the U.S. Geological Survey (USGS) and South Dakota State University, published their work in the Nov. 15 issue of the journal Science.
Key to the project was collaboration with team members from Google Earth Engine, who reproduced in the Google Cloud the models developed at the University of Maryland for processing and characterizing the Landsat data.
During the study period, Brazil cut its deforestation rate from approximately 15,400 square miles (40,000 square kilometers) per year to approximately 7,700 square miles (20,000 square kilometers) per year.
"That's the result of a concerted policy effort to reduce deforestation, and it sets a standard for the rest of the world," Hansen said.
The team found t the deforestation rate in other countries increased. Indonesia's deforestation rate doubled in the study period, from approximately 3,900 square miles (10,000 square kilometers) per year in 2000-2003 to more than 7,700 square miles (20,000 square kilometers) in 2011-2012.
"Since the first Landsat satellite launched 41 years ago, scientists have been improving their land cover analysis as computers have become more powerful," said Jeff Masek, Landsat project scientist at NASA's Goddard Space Flight Center in Greenbelt, Md. "Projects like Hansen's took a big leap forward once USGS made the data freely available on the Internet in 2008."
"This is the first time somebody has been able to do a wall-to-wall, global Landsat analysis of all the world's forests -- where they're being cleared, where they're regrowing, and where they're subject to natural disturbances," Masek said, noting that the maps could be routinely updated to aid in carbon accounting and other studies of land cover change.
The maps also illustrate the impact of politics on land cover. On the island of Borneo, the maps clearly show the border between Malaysia and Indonesia. Malaysia's heavy logging along forest roads is visible right up to the Indonesian border, where forests were still largely intact as of 2012. In Côte d'Ivoire, a civil war in 2002 corresponded with intense deforestation of several previously protected nature reserves.
A different pattern of change appears in the southeastern U.S., where landowners harvest trees for timber and quickly plant their replacements.
"Of this eco-region in the southeast, 30 percent of the forest land was regrown or lost during this period," Hansen said. "It's incredibly intensive. Trees are really treated like a crop in this region."
In Alabama, Landsat also detected miles-long streaks of destroyed forest. When the researchers examined the year-by-year record, they found the damage occurred in 2011 after a violent tornado season.
Since 1972, the Landsat program has played a critical role in monitoring, understanding and managing the resources needed to sustain human life such as food, water and forests. Landsat 8 was launched Feb. 11 and is managed jointly by NASA and USGS to continue the 40-plus years of Earth observations.
To view the forest cover maps in Google Earth Engine, visit:
For more information about the Landsat satellites, visit:
NASA
Guillermo Gonzalo Sánchez Achutegui
Inscríbete en el Foro del blog y participa : A Vuelo De Un Quinde - El Foro!

domingo, 7 de julio de 2013

NASA - NASA Launches New Earth Observation Satellite to Continue 40-Year Legacy






Landsat Satellite Looks Back at El Paso, Forward to a New Mission
June 11, 2013
 
Landsat satellites have captured hundreds of images of the region surrounding El Paso, Texas. On May 30, 2013, Landsat 8 began adding to the program's extensive image archive.
Credit: Robert Simmon, NASA's Earth Observatory, using data from USGS and NASA
› Download video
› More from NASA's Earth Observatory

Landsat has seen a lot in its day. In one spot of desert, where the Rio Grande marks the border between the United States and Mexico, the satellite program captured hundreds of images of fields turning green with the season, new developments expanding from El Paso, Texas, and clouds moving over the neighboring mountains.

For more than 40 years, Landsat satellites have collected millions of images of this region and others worldwide. And as Landsat 8 begins its new mission, collecting more than 400 images per day, scientists are anticipating what the program's trove of images will reveal about Earth's surface.

"These are scientific data, as much as they're beautiful images," said Doug Morton, a physical scientist at NASA's Goddard Space Flight Center in Greenbelt, Md., who uses Landsat data to study changes in forest ecosystems over time.

Orbiting 438 miles above Earth, Landsat satellites collect visible and infrared light reflected from the surface and thermal infrared light emitted by the surface. The different wavelengths can provide information not just about visible elements of the land cover, but also about the health of vegetation, water use and more.

Transparencies and crayons

When the first Landsat satellite, originally called the Earth Resources Technology Satellite, or ERTS, started orbiting in 1972, it was no small feat to visualize the data and conduct research.

The Landsat program's first satellite (originally known as ERTS, the Earth Resources Technology Satellite) was launched on July 23, 1972. This video is a compilation of archival footage about ERTS from 1973.
Credit: NASA
› Download this video in HD formats

"When ERTS was first launched, there was one cathode ray tube in the country that could take in the digital data and display an image," said Jeff Masek, Landsat project scientist at Goddard.

In the early years, satellite observations of the light reflected off of Earth were transmitted down to receiving stations and mailed to processing centers. Computers translated the image data into photographic prints or transparencies that could be placed on light tables for interpretation. Alternatively, computers translated the numbers in each pixel into alpha-numeric symbols that were printed on large reams of paper. Analysts, often graduate students, could then color-in the symbols with crayon or magic markers. Standing on ladders over the colored-in data, they'd try to visualize the landscape represented by the maps.

"Things were pretty primitive in those days," Masek said. "People say, 'Well why didn't they produce a global land cover map in those first few years?' They were lucky to be able to look at one image for a Ph.D. dissertation."

The process is significantly quicker with Landsat 8, a joint mission between NASA and the U.S. Geological Survey, or USGS, which took operational control of the satellite May 30.

NASA and USGS scientists have been working for months to properly calibrate each of the thousands of detectors on Landsat 8, so scientists using the data can access images that are accurate and consistent with previous Landsat missions. The latest satellite will collect at least 400 images per day, and the USGS facility in Sioux Falls, S.D., will receive, process and archive those scenes within 24 hours. Scientists, analysts and the general public will have access to these images within hours, as the USGS distributes requested digital images over the internet for free.

Millions of scenes, free to explore

Since 2008, all Landsat digital images in the USGS archive have been freely available online. Scientists, land managers, planners and others have downloaded scenes more than 11 million times.

Researchers have been studying scientific information from Landsat for decades now, Morton said. Landsat data are the backbone for a range of research and operational programs, including monitoring agricultural productivity, water use and forest fire damages in the United States. But opening the Landsat archive, combined with modern computing power, allows scientists to take a wider view than just one scene, and to look over time.

"The ability to use every image in the archive has revolutionized the way we do science, conduct business and share information worldwide," Morton said. "Instead of picking an anniversary date – like the middle of summer – and looking at that date over as many years as there are cloud-free data available, we're starting to mine every pixel in the archive."

Due to cost and computing restrictions, a scientist studying deforestation, for example, previously might have only used two images – one before and one after – to see the extent of logging. Now, with free images and powerful computers, researchers can assemble dozens of monthly or seasonal images to examine the ebb or flow of cutting and regrowth.

"There's been a proliferation of very large-scale applications of the scientific analysis we know how to do," Morton said. "The range of Landsat data uses continues to grow, and our planet is constantly changing. That's the exciting part about Landsat 8 – the continuity of observations and the next chapter in the story of our changing planet."

While the methods for analyzing data have vastly improved in the last 40 years, the reasons for collecting data have remained constant, said Bruce Cook, Landsat deputy project scientist at Goddard.

"It's still inventorying natural resources, still looking at their utilization," Cook said. "It's still looking at the interactions between people and their environment. But now you're talking about a world population that has doubled, almost, since the first Landsat. So there's even more pressure on our natural resources, and more reason to be studying these things."

Building a complete record

The USGS Sioux Falls Landsat archive already stores more than 3 million scenes. But it could take millions of images - and billions of pixels - to get a complete record of issues like how ecosystems are responding to a warming world, Masek said.

"There are a bunch of interesting ecological questions related to climate change, which Landsat could be applied to," he said. "But that takes a lot of data. You don't get a reliable answer if you just look at a couple of images. You really have to look at a deep-time series."

He and Morton have studied a strip of land in Quebec, Canada, to measure shrub density, for example, and found that some areas are getting greener as more plants sprout in areas that were previously too cold. Others have used Landsat to scour Siberia and study how permafrost thaws affect the number of lakes, Masek said.

"I'm very interested in, now that we have a 40-, going on 50-year record, the signs of climate change in ecosystems around the world," he said.

Researchers can also make full use of all of the different wavelengths, Morton said. Natural color images like the El Paso animation are created from wavelengths within the range of human vision. But Landsat 8's Operational Land Imager detects a total of nine spectral bands, including four infrared wavelengths beyond what people can see. Scientists use different combinations of bands to measure the health of the vegetation on the ground, watch young forests grow and perhaps change in species composition. Landsat data are also used to study the atmosphere: For example, a time series can help researchers study the reduction of sulfur dioxide pollution over Pennsylvania and the eastern United States after the shuttering of Midwestern coal plants.

"A scientist, looking at these images, sees more than initially meets the eye," Morton said. "The information in different Landsat bands allows scientists to quantify subtle changes over time-the response of a forest to droughts, the change in reflectance as a forest canopy grows taller and more variable over time. We see that ecosystems are changing all the time, and Landsat data captures these changes like no other program in the world."

Over Landsat's 40 years, scientists have made significant strides in understanding, evaluating and interpreting the data that comes back from the program's satellites, Morton said. With the new computer power and the continuously growing archive, scientists can take a closer, more informed look at the planet.

"History is made every day," he said. "You better have an image to capture it."

For more information about Landsat, visit:
www.nasa.gov/landsat

 http://landsat.usgs.gov
 
 
Kate Ramsayer
NASA's Goddard Space Flight Center, Greenbelt, Md.



NASA Launches New Earth Observation Satellite to Continue 40-Year Legacy
WASHINGTON - NASA's Landsat Data Continuity Mission (LDCM) roared into space at 1:02 p.m. EST (10:02 a.m. PST) Monday aboard an Atlas V rocket from Vandenberg Air Force Base in California.

The LDCM spacecraft separated from the rocket 79 minutes after launch and the first signal was received three minutes later at a ground station in Svalbard, Norway. The solar arrays deployed 86 minutes after launch, and the spacecraft is generating power from them. LDCM is on course to reach its operational, sun-synchronous, polar orbit 438 miles (705 kilometers) above Earth within two months.

"Landsat is a centerpiece of NASA's Earth Science program, and today's successful launch will extend the longest continuous data record of Earth's surface as seen from space," NASA Administrator Charles Bolden said. "This data is a key tool for monitoring climate change and has led to the improvement of human and biodiversity health, energy and water management, urban planning, disaster recovery and agriculture monitoring - all resulting in incalculable benefits to the U.S. and world economy."

LDCM will go through a check-out phase for the next three months. Afterward, operational control will be transferred to NASA's mission partner, the Department of the Interior's U.S. Geological Survey (USGS), and the satellite will be renamed Landsat 8. Data will be archived and distributed free over the Internet from the Earth Resources and Science (EROS) center in Sioux Falls, S.D. Distribution of Landsat 8 data from the USGS archive is expected to begin within 100 days of launch.

LDCM is the eighth in the Landsat series of satellites that have been continuously observing Earth's land surfaces since 1972.

"Landsat has been delivering invaluable scientific information about our planet for more than forty years," Interior Secretary Ken Salazar said. "It's an honor to be a part of today's launch to ensure this critical data will continue to help us better understand our natural resources and help people like water managers, farmers, and resource managers make informed decisions."

The use of Landsat data been transformed in recent years by advancements in computing power and the decision by USGS to allow free online access to the information. This revolution has allowed scientists to detect changes over time to our planet and has enabled a host of applications based on Landsat measurements to be developed by researchers, the private sector, and state, local, and tribal governments.

LDCM continues that legacy with more and better observations. The spacecraft carries two instruments, the Operational Land Imager (OLI) and Thermal Infrared Sensor (TIRS). The measurements will be compatible with data from past Landsat satellites, but the LDCM instruments use advanced technology to improve reliability, sensitivity, and data quality.

"LDCM is the best Landsat satellite ever built," said Jim Irons, a LDCM project scientist at NASA's Goddard Space Flight Center in Greenbelt, Md. "The technology will advance and improve the array of scientific investigations and resource management applications supported by Landsat images. I anticipate new knowledge and applications to emerge with an increasing demand for the data."

OLI will continue observations currently made by Landsat 7 in the visible, near infrared, and shortwave infrared portions of the electromagnetic spectrum. It also will take measurements in two new bands, one to observe high-altitude cirrus clouds and another to observe atmospheric aerosols, as well as water quality in lakes and shallow coastal waters. OLI's new design has fewer moving parts than instruments on previous Landsat satellites.

TIRS will collect data on heat emitted from Earth's surface in two thermal bands, as compared with a single thermal band on previous Landsat satellites. These thermal band observations are becoming increasingly vital to monitoring water consumption, especially in the arid western United States.

On Monday afternoon, Bolden will tour Vandenberg's Space Launch Complex 4, which is home to a new Space Exploration Technologies (SpaceX) launch pad. The pad is nearing completion to support SpaceX launches beginning in 2013. NASA's first use will be in 2015 with the launch of the Jason-3 mission, which will precisely measure sea surface height on Earth to monitor ocean circulation and sea level. SpaceX is the newest American company to demonstrate the capability to launch science missions for NASA and other government agencies. Jason-3 will be developed and operated as part of an international effort led by the National Oceanic and Atmospheric Administration. Bolden also will see the Orbital Sciences Pegasus rocket, being readied at Vandenberg, for the launch this April of NASA's Interface Region Imaging Spectrograph (IRIS) heliophysics mission.

Ball Aerospace & Technologies Corp. built the OLI instrument in Boulder, Colo. NASA's Goddard Space Flight Center built the TIRS instrument. Orbital Sciences Corp. built, integrated, and tested the spacecraft in Gilbert, Ariz. USGS provided the LDCM ground system. The launch was managed by NASA's Launch Services Program based at the agency's Kennedy Space Center in Florida. United Launch Alliance provided the Atlas V launch vehicle.

For more information about LDCM, visit:
 
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com 
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sábado, 16 de febrero de 2013

NASA - NASA Launches New Earth Observation Satellite to Continue 40-Year Legacy


Landsat 5 Sets Guinness World Record For 'Longest Operating Earth Observation Satellite'
02.10.13
Artist's rendition of Landsat 5 Artist's rendition of Landsat 5. Credit: USGS Landsat 5 successfully set the new Guinness World Records title for 'Longest-operating Earth observation satellite’ as stated in an e-mail from Guinness World Records sent to NASA Goddard Space Flight Center in Greenbelt, Md. Outliving its three-year design life, Landsat 5 delivered high-quality, global data of Earth's land surface for 28 years and 10 months.

NASA launched Landsat 5 from Vandenberg Air Force base in Lompoc, Calif. on March 1, 1984. Landsat 5 was designed and built at the same time as Landsat 4 and carried the same two instruments: the Multispectral Scanner System (MSS) and the Thematic Mapper (TM).

Managed by the U.S. Geological Survey (USGS) as part of the Landsat Program, it completed over 150,000 orbits and sent back more than 2.5 million images of Earth’s surface. On Dec. 21, 2012 the USGS announced Landsat 5 would be decommissioned in the coming months after the failure of a redundant gyroscope. The satellite carries three gyroscopes for attitude control and needs two to maintain control.

Landsat 5 taking off from Vandenberg Air Force Base, Lompoc Calif. on March 1, 1984. › View larger
Landsat 5 taking off from Vandenberg Air Force Base, Lompoc Calif. on March 1, 1984. Photo credit: NASA/Raytheon

Landsat captured the extent of, and recovery from, the destruction from the 1980 Mount St. Helens eruption. › View larger
Image of Mount Saint Helens: The 1980 Mount St. Helens eruption was one of the most significant natural disasters in the U.S. in the past half-century. Landsat captured the extent of, and recovery from, the destruction. Credit: NASA/USGS

This image shows the Columbia Glacier in Alaska one of many vanishing around the world. › View larger
This image shows the Columbia Glacier in Alaska one of many vanishing around the world. Glacier retreat is one of the most direct and understandable effects of climate change. Credit: NASA/USGS "This is the end of an era for a remarkable satellite, and the fact that it flew for almost three decades is a testament to the NASA engineers who launched it and the USGS team who kept it flying well beyond its expected lifetime," said Anne Castle, Department of the Interior Assistant Secretary for Water and Science in a press release.

Originally designed to be retrievable by the space shuttle, Landsat 5 was equipped with extra fuel. That extra fuel kept the satellite operating for much longer than anticipated after the space shuttle retrieval plan was thrown out.

Space is a harsh environment, and Landsat 5 faced more than twenty technical issues throughout its lifetime as parts gave in to wear and age. Landsat 5's USGS Flight Operations team found engineering and operational fixes to work around the problems, which included losing batteries, star trackers, and on-board data recording capability.

"The efforts of the Landsat team were heroic. Landsat 5 could not have lasted so long without the dedication and devotion of the USGS flight operations team that overcame a number of difficult technical challenges over the last 12 years," said Jim Irons, LDCM project scientist.

Not only did they keep the satellite going, said Irons, but in doing so, "Landsat 5 saved the Landsat program. This satellite's longevity preserved the Landsat program through the loss of Landsat 6 in 1993, preventing the specter of a data gap before the launch of Landsat 7 in 1999."

Today, the Landsat program continues to provide data used across the United States and the world for agricultural and forest monitoring and water resource management, among many other environmental applications.

NASA is launching its next successor to the still operational Landsat 7 satellite, the Landsat Data Continuity Mission (LDCM) on Feb. 11, 2013. LDCM carries two new instruments, the Operational Land Imager and the Thermal Infrared Sensor, which will collect data that are compatible with data from Landsat 5 and 7, and improve upon it with advanced instrument designs that are more sensitive to changes to the land surface, said Irons.

LDCM will continue the Landsat program's 40-year data record of monitoring Earth from space. Once the LDCM satellite is extensively tested and certified for its mission, it will be renamed Landsat 8 and be operated by the U.S. Geological Survey.
Laura Betz
NASA's Goddard Space Flight Center, Greenbelt, Md.













NASA Launches New Earth Observation Satellite to Continue 40-Year Legacy
WASHINGTON -- NASA's Landsat Data Continuity Mission (LDCM) roared into space at 1:02 p.m. EST (10:02 a.m. PST) Monday aboard an Atlas V rocket from Vandenberg Air Force Base in California.

The LDCM spacecraft separated from the rocket 79 minutes after launch and the first signal was received 3 minutes later at a ground station in Svalbard, Norway. The solar arrays deployed 86 minutes after launch, and the spacecraft is generating power from them. LDCM is on course to reach its operational, sun-synchronous, polar orbit 438 miles (705 kilometers) above Earth within two months.

"Landsat is a centerpiece of NASA's Earth Science program, and today's successful launch will extend the longest continuous data record of Earth's surface as seen from space," NASA Administrator Charles Bolden said. "This data is a key tool for monitoring climate change and has led to the improvement of human and biodiversity health, energy and water management, urban planning, disaster recovery and agriculture monitoring -- all resulting in incalculable benefits to the U.S. and world economy."

LDCM will go through a check-out phase for the next three months. Afterward, operational control will be transferred to NASA's mission partner, the Department of the Interior's U.S. Geological Survey (USGS), and the satellite will be renamed Landsat 8. Data will be archived and distributed free over the Internet from the Earth Resources and Science (EROS) center in Sioux Falls, S.D. Distribution of Landsat 8 data from the USGS archive is expected to begin within 100 days of launch.

LDCM is the eighth in the Landsat series of satellites that have been continuously observing Earth's land surfaces since 1972.

"Landsat has been delivering invaluable scientific information about our planet for more than forty years," Interior Secretary Ken Salazar said. "It's an honor to be a part of today's launch to ensure this critical data will continue to help us better understand our natural resources and help people like water managers, farmers, and resource managers make informed decisions."

The use of Landsat data been transformed in recent years by advancements in computing power and the decision by USGS to allow free online access to the information. This revolution has allowed scientists to detect changes over time to our planet and has enabled a host of applications based on Landsat measurements to be developed by researchers, the private sector, and state, local, and tribal governments.

LDCM continues that legacy with more and better observations. The spacecraft carries two instruments, the Operational Land Imager (OLI) and Thermal Infrared Sensor (TIRS). The measurements will be compatible with data from past Landsat satellites, but the LDCM instruments use advanced technology to improve reliability, sensitivity, and data quality.

"LDCM is the best Landsat satellite ever built," said Jim Irons, a LDCM project scientist at NASA's Goddard Space Flight Center in Greenbelt, Md. "The technology will advance and improve the array of scientific investigations and resource management applications supported by Landsat images. I anticipate new knowledge and applications to emerge with an increasing demand for the data."

OLI will continue observations currently made by Landsat 7 in the visible, near infrared, and shortwave infrared portions of the electromagnetic spectrum. It also will take measurements in two new bands, one to observe high-altitude cirrus clouds and another to observe atmospheric aerosols as well as water quality in lakes and shallow coastal waters. OLI's new design has fewer moving parts than instruments on previous Landsat satellites.

TIRS will collect data on heat emitted from Earth's surface in two thermal bands, as compared with a single thermal band on previous Landsat satellites. These thermal band observations are becoming increasingly vital to monitoring water consumption, especially in the arid western United States.

On Monday afternoon, Bolden will tour Vandenberg's Space Launch Complex-4, which is home to a new Space Exploration Technologies (SpaceX) launch pad. The pad is nearing completion to support SpaceX launches beginning in 2013. NASA's first use will be in 2015 with the launch of the Jason-3 mission, which will precisely measure sea surface height on Earth to monitor ocean circulation and sea level. SpaceX is the newest American company to demonstrate the capability to launch science missions for NASA and other government agencies. Jason-3 will be developed and operated as part of an international effort led by the National Oceanic and Atmospheric Administration. Bolden also will see the Orbital Sciences Pegasus rocket, being readied at Vandenberg, for the launch this April of NASA's Interface Region Imaging Spectrograph (IRIS) heliophysics mission.

Ball Aerospace & Technologies Corp. built the OLI instrument in Boulder, Colo. NASA's Goddard Space Flight Center built the TIRS instrument. Orbital Sciences Corporation built, integrated, and tested the spacecraft in Gilbert, Ariz. USGS provided the LDCM ground system. The launch was managed by NASA's Launch Services Program based at the agency's Kennedy Space Center in Florida. United Launch Alliance provided the Atlas V launch vehicle.

For more information about LDCM, visit:

and


NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com   
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lunes, 11 de febrero de 2013

NASA - Landsat Spacecraft Launches


 The United Launch Alliance (ULA) Atlas-V rocket with the Landsat Data Continuity Mission (LDCM) spacecraft onboard is seen as it launches on Monday, Feb. 11, 2013 at Vandenberg Air Force Base, Calif.

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NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
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domingo, 13 de enero de 2013

NASA - NASA Prepares for Launch of Next Earth Observation Satellite

 NASA Prepares for Launch of Next Earth Observation Satellite

 
NASA's Landsat Data Continuity Mission (LDCM) is scheduled to launch Feb. 11 from Vandenberg Air Force Base in California. A joint NASA and U.S. Geological Survey (USGS) mission, LDCM will add to the longest continuous data record of Earth's surface as viewed from space.

LDCM is the eighth satellite in the Landsat series, which began in 1972. The mission will extend more than 40 years of global land observations that are critical in many areas, such as energy and water management, forest monitoring, human and environmental health, urban planning, disaster recovery and agriculture. NASA and the USGS jointly manage the Landsat Program.

 The Landsat Data Continuity Mission (LDCM), a collaboration between NASA and the U.S. Geological Survey, will provide moderate-resolution measurements of Earth's terrestrial and polar regions in the visible, near-infrared, short wave infrared, and thermal infrared. There are two instruments on the spacecraft, the Thermal InfraRed Sensor (TIRS) and the Operational Land Imager (OLI). LDCM will provide continuity with the nearly 40-year long Landsat land imaging data set, enabling people to study many aspects of our planet and to evaluate the dynamic changes caused by both natural processes and human practices.
Credit: NASA's Goddard Space Flight Center
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 http://www.nasa.gov/images/content/708457main_SANY0005.JPGLDCM installed on horizontal support frame after completing thermal vacuum testing at Orbital SciencesCorporation's facility in Gilbert, Ariz. Credit: Orbital
› Larger image

NASA Prepares for Launch of Next Earth Observation Satellite
 
 
WASHINGTON -- NASA's Landsat Data Continuity Mission (LDCM) is scheduled to launch Feb. 11 from Vandenberg Air Force Base in California. A joint NASA and U.S. Geological Survey (USGS) mission, LDCM will add to the longest continuous data record of Earth's surface as viewed from space.

LDCM is the eighth satellite in the Landsat series, which began in 1972. The mission will extend more than 40 years of global land observations that are critical in many areas, such as energy and water management, forest monitoring, human and environmental health, urban planning, disaster recovery and agriculture. NASA and the USGS jointly manage the Landsat Program.

"For decades, Landsat has played an important part in NASA's mission to advance Earth system science. LDCM promises to extend and expand that capability," said Michael Freilich, director of the Earth Science Division in the Science Mission Directorate at NASA Headquarters in Washington. "USGS's policy of offering free and open access to the phenomenal 40-year Landsat data record will continue to give the United States and global research community a better understanding of the changes occurring on our planet."

After launch, LDCM will enter a polar orbit, circling the Earth about 14 times daily from an altitude of 438 miles (705 kilometers), returning over each location on Earth every 16 days. After launch and the initial checkout phase, the USGS will take operational control of the satellite, and LDCM will be renamed Landsat 8. Data will be downlinked to three ground stations in Gilmore Creek, Alaska; Svalbard, Norway; and Sioux Falls, S.D. The data will be archived and distributed at no cost to users from the USGS's Earth Resources Observation and Science Center in Sioux Falls.

"The Landsat program provides the nation with crucial, impartial data about its natural resources," said Matthew Larsen, USGS associate director for climate and land use change in Reston, Va. "Forest managers, for instance, use Landsat's recurring imagery to monitor the status of woodlands in near real-time. Landsat-based approaches also now are being used in most western states for cost-effective allocation of water for irrigation. This mission will continue that vital role."

LDCM carries two instruments, the Operational Land Imager (OLI), built by Ball Aerospace & Technologies Corp. in Boulder, Colo., and the Thermal Infrared Sensor (TIRS), built by NASA's Goddard Space Flight Center in Greenbelt, Md. These instruments are designed to improve performance and reliability over previous Landsat sensors.

"LDCM will be the best Landsat satellite yet launched in terms of the quality and quantity of the data collected by the LDCM sensors," said Jim Irons, LDCM project scientist at Goddard. "OLI and TIRS both employ technological advances that will make the observations more sensitive to the variation across the landscape and to changes in the land surface over time."

OLI will continue observations currently made by Landsat 7 in the visible, near infrared, and shortwave infrared portions of the electromagnetic spectrum. It also will take measurements in two new bands, one to observe high altitude cirrus clouds and one to observe water quality in lakes and shallow coastal oceans as well as aerosols. OLI's new design has fewer moving parts than previous versions.

TIRS will collect data on heat emitted from Earth's surface in two thermal bands, as opposed to the single thermal band on previous Landsat satellites. Observations in the thermal bands are vital to monitoring water consumption, especially in the arid western United States.

The LDCM spacecraft, built by Orbital Sciences Corp. in Gilbert, Ariz., will launch from Vandenberg's Space Complex 3 aboard an Atlas V rocket provided by United Launch Alliance. NASA's Launch Services Program at Kennedy Space Center is responsible for launch management.

For more information on LDCM and the Landsat Program, visit:

and

NASA

 Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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