GPS News  
GPS NEWS
Using GPS Data To Model Effects Of Tidal Loads On Earth Surface

The outline of each ellipse represents the motion the ground makes as the earth flexes in response to the time and space dependent tides. There is an ellipse for each of the GPS sites used in the study, and the color indicates the amplitude of the tidal response movement. Credit: California Institute of Technology
by Staff Writers
Pasadena CA (SPX) Apr 19, 2011
For many people, Global Positioning System (GPS) satellite technology is little more than a high-tech version of a traditional paper map. Used in automobile navigation systems and smart phones, GPS helps folks find their way around a new neighborhood or locate a nearby restaurant. But GPS is doing much, much more for researchers at the California Institute of Technology (Caltech): it's helping them find their way to a more complete understanding of Earth's interior structure.

Up until now, the best way to explore Earth's internal structures-to measure geological properties such as density and elasticity-has been through seismology and laboratory experiments.

"At its most fundamental level, seismology is sensitive to specific combinations of these properties, which control the speed of seismic waves," says Mark Simons, professor of geophysics at Caltech's Seismological Laboratory, part of the Division of Geological and Planetary Sciences. "However, it is difficult using seismology alone to separate the effects that variations in density have from those associated with variations in elastic properties."

Now Simons and Takeo Ito, visiting associate at the Seismological Laboratory and assistant professor of earth and planetary dynamics at Nagoya University in Japan, are using data from GPS satellite systems in an entirely new way: to measure the solid earth's response to the movements of ocean tides-which place a large stress on Earth's surface-and to estimate separately the effects of Earth's density and the properties controlling response when a force is applied to it (known as elastic moduli).

Their work was published in this week's issue of Science Express.

By using measurements of Earth's movement taken from high-precision, continuously recording permanent GPS receivers installed across the western United States by the Plate Boundary Observatory (PBO), the researchers were able to observe tide-induced displacements-or movements of Earth's surface-of as little as one millimeter.

PBO is a component of EarthScope, a program that seeks to understand the processes controlling earthquakes and volcanoes by exploring the structure and evolution of the North American continent.

The team focused on understanding the properties of the asthenosphere, a layer of weak and viscous upper mantle that lies below Earth's crust, and used those measurements to build one-dimensional models of Earth's response to the diurnal tides in the western United States.

"The asthenosphere plays an important role in plate tectonics, as it lies directly under the plates," explains Ito. "The results of our study give us a better understanding of the asthenosphere, which in turn can help us understand how the plates move."

The models provided a look at the variations in density from Earth's surface down to a depth of about 400 kilometers. The researchers found that the density of the asthenosphere under the western United States and the eastern Pacific Ocean is abnormally low relative to the global average.

"Variations in density can either be caused by variations in the chemical makeup of the material, the presence of melt, or due to the effects of thermal expansion, whereby a given material will decrease in density as its temperature increases," explains Simons.

"In this study, we interpret the observed density anomaly to be due to the effects of elevated temperatures in the asthenosphere below the western United States and neighboring offshore areas. The required peak temperature anomaly would be about 300 degrees Celsius higher than the global average at those depths."

This type of data provides keys to understanding the chemical and mechanical dynamics of the planet, such as how heat flows through the mantle and how tectonic plates on Earth's surface are evolving.

"It is amazing that by measuring the twice-a-day centimeter-scale cyclic movement of Earth's surface with a GPS receiver, we can infer the variation of density 220 kilometers below the surface," says Simons.

Now that the researchers know it is possible to use GPS to derive measurements of internal Earth structures, they anticipate several new directions for this research.

"We hope to extend the observations to be global in scope, which may require temporary deployments of GPS in important areas that are typically tectonically bland-in other words, devoid of significant earthquakes and volcanoes-and thus do not have existing dense continuous GPS arrays already in place," says Simons.

Next steps may also include going beyond the current one-dimensional depth-dependent models to build 3-D models, and combining the GPS approach with more conventional seismic approaches.

"The method we developed for gathering data from GPS devices has significant potential for improving 3-D images of Earth's internal structure," says Ito.



Share This Article With Planet Earth
del.icio.usdel.icio.us DiggDigg RedditReddit
YahooMyWebYahooMyWeb GoogleGoogle FacebookFacebook



Related Links
California Institute of Technology
GPS Applications, Technology and Suppliers



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


GPS NEWS
China launches navigation satellite
Shanghai (AFP) April 10, 2011
China on Sunday launched its eighth satellite orbiter as part of its navigation and positioning network, state media reported. A Long March-3A carrier rocket carrying the "Beidou," or Compass, navigation satellite took off before dawn from the Xichang satellite launch centre in southwest Sichuan province, the China Daily's website reported. The satellite launch will establish a basic nav ... read more







GPS NEWS
Disease hits wheat crops in Africa, Mideast

Nationwide Study Finds US Meat And Poultry Is Widely Contaminated

Activists save Chinese dogs from cooking pot

Japan asks Brazil to ease food import rules

GPS NEWS
Super-Small Transistor Created, Artificial Atom Powered By Single Electrons

New Spin On Graphene

Researchers Advance Toward Hybrid Spintronic Computer Chips

ASML quarterly profits soar, record year expected

GPS NEWS
Argentina, Brazil partner in transport jet

Balloons fight crows in Lithuanian city

Ceramic Coatings May Protect Jet Engines From Volcanic Ash

Airline readiness for volcanic ash clouds tested

GPS NEWS
Japan quake causes worry at Shanghai auto show

More Evidence Suggests Electric Cars Need Night Time Charging

Lasers could replace spark plugs in cars

Carmakers look to an electric future in China

GPS NEWS
Truck drivers go on strike at Shanghai ports

Gold tops $1,500 for first time

Brazil wants the Fed to fix the dollar

Australia's mining boom a challenge?

GPS NEWS
Greenhouse Gases From Forest Soils

Indonesia's carbon-rich wetlands essential

NGO sues to save forest for Paraguay natives

Low Fertilizer Use Drives Deforestation In West Africa

GPS NEWS
Goa Seeks ISRO Expertise For Mapping Mangroves, Sand Dunes

Satellites can give advance hurricane info

Belgium probes Google's Street View

Landsat: Who Are The Customers

GPS NEWS
Climate Change From Black Carbon Depends On Altitude

New Fracture Resistance Mechanisms Provided By Graphene

German cabinet approves CO2 storage bill

Europe pushes plans to hike diesel, coal taxation


The content herein, unless otherwise known to be public domain, are Copyright 1995-2010 - SpaceDaily. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by SpaceDaily on any Web page published or hosted by SpaceDaily. Privacy Statement