Showing posts with label GPS. Show all posts
Showing posts with label GPS. Show all posts

NASA Uses New Method to Estimate Earth Mass Movements

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NASA and European researchers have conducted a novel study to simultaneously measure, for the first time, trends in how water is transported across Earth's surface and how the solid Earth responds to the retreat of glaciers following the last major Ice Age, including the shifting of Earth's center of mass. To calculate the changes, scientists at NASA's Jet Propulsion Laboratory, Pasadena, Calif.; Delft University of Technology, Delft, Netherlands; and the Netherlands Institute for Space Research, Utrecht, Netherlands, combined gravity data from the NASA/German Aerospace Center Gravity Recovery and Climate Experiment satellites with direct measurements of global surface movements from GPS and other sources and a JPL-developed model that estimates the mass of Earth's ocean above any point on the ocean floor. Results are reported in the September issue of Nature Geoscience.

Using the new methodology, the researchers, led by Xiaoping Wu of JPL, calculated new estimates of ice loss in Greenland and Antarctica that are significantly smaller than previous estimates. According to the team's estimates, mass losses between 2002 and 2008 measured 104 gigatonnes a year in Greenland, 101 gigatonnes a year in Alaska/Yukon, and 64 gigatonnes a year in West Antarctica. A gigatonne is one billion metric tons, or more than 2.2 trillion pounds. The smaller but significant ice loss estimates reflect the revised role that post-glacial rebound was found to play in relation to current ice mass loss in Greenland and Antarctica. Post-glacial rebound is the response of the solid Earth to the retreat of glaciers following the last Ice Age. After the weight of ice from the land surface was removed, the land under the ice rose and continues to slowly rise.

In addition, the team found that the shift of water mass around the globe, combined with the post glacial rebound of Earth's surface, is shifting Earth's surface relative to its center of mass by 0.88 millimeters a year toward the North Pole. The estimate of the shift due to rebound-0.72 millimeters per year is believed to be the first estimate based on actual data, rather than a model prediction. Wu said the shift of Earth's surface is due primarily to the melted Laurentide ice sheet, which blanketed most of Canada and a part of the northern United States around 21,000 years ago. "The new estimate of shift is much larger than previous model estimates of 0.48 millimeters per year," said Wu. "This suggests that either Earth's lower mantle must be much more viscous than previously believed, or that the history of Earth's deglaciation needs to be significantly revised."

NASA Demonstrates Tsunami Prediction System

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A NASA-led research team has successfully demonstrated for the first time elements of a prototype tsunami prediction system that quickly and accurately assesses large earthquakes and estimates the size of resulting tsunamis.After the magnitude 8.8 Chilean earthquake on Feb. 27, a team led by Y. Tony Song of NASA's Jet Propulsion Laboratory in Pasadena, Calif., used real-time data from the agency's Global Differential GPS (GDGPS) network to successfully predict the size of the resulting tsunami.

The network, managed by JPL, combines global and regional real-time data from hundreds of GPS sites and estimates their positions every second. It can detect ground motions as small as a few centimeters. "This successful test demonstrates that coastal GPS systems can effectively be used to predict the size of tsunamis," said Song. "This could allow responsible agencies to issue better warnings that can save lives and reduce false alarms that can unnecessarily disturb the lives of coastal residents."

Song's team concluded that the Chilean earthquake, the fifth largest ever recorded by instruments, would generate a moderate, or local, tsunami unlikely to cause significant destruction in the Pacific. The tsunami's effect was relatively small outside of Chile. 

Air Force Launches Advanced New GPS Satellites

The first of an advanced new fleet of navigation satellites for the U.S. Air Force soared into space late Thursday in a blazing night open from a seaside pad in Florida.The new global positioning system (GPS) satellite, called GPS 2F-1, flaming off atop an unmanned Delta 4 rocket at 11 p.m. EDT (0300 Friday GMT) from Florida's Cape Canaveral Air Force Station.

GPS 2F-1 lifted off after a week of delay due to bad weather and technical issue. It is the first of a planned fleet of 12 new satellites to provide around-the-clock navigation ultra-precise direction-finding and timing services for military and civilian."These next-generation satellites give improved accuracy through advanced atomic clocks; a more jam-resistant military signal and a longer design life than earlier GPS satellites; and a new civil signal that profit aviation safety and search-and-rescue efforts," said Craig Cooning, vice president and general manager for Boeing Space and Intelligence Systems, which built the new satellite.

The GPS satellite network currently in use today flies about 11,000 miles (17,702 km) above the Earth and beam nonstop navigation signals to provide accurate longitude, latitude, altitude and time information for users on Earth. The network was originally developed for the U.S. military but has since found use for a wide range of marketable applications.