Subscribe free to our newsletters via your
. GPS News .




TECTONICS
Ice-loss moves the Earth 250 miles down
by Staff Writers
Newcastle UK (SPX) May 14, 2014


File image.

At the surface, Antarctica is a motionless and frozen landscape. Yet hundreds of miles down the Earth is moving at a rapid rate, new research has shown.

The study, led by Newcastle University, UK, and published in Earth and Planetary Science Letters, explains for the first time why the upward motion of the Earth's crust in the Northern Antarctic Peninsula is currently taking place so quickly.

Previous studies have shown the earth is 'rebounding' due to the overlying ice sheet shrinking in response to climate change. This movement of the land was understood to be due to an instantaneous, elastic response followed by a very slow uplift over thousands of years.

But GPS data collected by the international research team, involving experts from Newcastle University, UK; Durham University; DTU, Denmark; University of Tasmania, Australia; Hamilton College, New York; the University of Colorado and the University of Toulouse, France, has revealed that the land in this region is actually rising at a phenomenal rate of 15mm a year - much greater than can be accounted for by the present-day elastic response alone.

And they have shown for the first time how the mantle below the Earth's crust in the Antarctic Peninsula is flowing much faster than expected, probably due to subtle changes in temperature or chemical composition. This means it can flow more easily and so responds much more quickly to the lightening load hundreds of miles above it, changing the shape of the land.

Lead researcher, PhD student Grace Nield, based in the School of Civil Engineering and Geosciences at Newcastle University, explains: "You would expect this rebound to happen over thousands of years and instead we have been able to measure it in just over a decade. You can almost see it happening which is just incredible.

"Because the mantle is 'runnier' below the Northern Antarctic Peninsula it responds much more quickly to what's happening on the surface. So as the glaciers thin and the load in that localised area reduces, the mantle pushes up the crust.

"At the moment we have only studied the vertical deformation so the next step is to look at horizontal motion caused by the ice unloading to get more of a 3-D picture of how the Earth is deforming, and to use other geophysical data to understand the mechanism of the flow."

Since 1995 several ice shelves in the Northern Antarctic Peninsula have collapsed and triggered ice-mass unloading, causing the solid Earth to 'bounce back'.

"Think of it a bit like a stretched piece of elastic," says Nield, whose project is funded by the Natural Environment Research Council (NERC). "The ice is pressing down on the Earth and as this weight reduces the crust bounces back. But what we found when we compared the ice loss to the uplift was that they didn't tally - something else had to be happening to be pushing the solid Earth up at such a phenomenal rate."

Collating data from seven GPS stations situated across the Northern Peninsula, the team found the rebound was so fast that the upper mantle viscosity - or resistance to flow - had to be at least ten times lower than previously thought for the region and much lower than the rest of Antarctica.

Professor Peter Clarke, Professor of Geophysical Geodesy at Newcastle University and one of the authors of the paper, adds: "Seeing this sort of deformation of the earth at such a rate is unprecedented in Antarctica. What is particularly interesting here is that we can actually see the impact that glacier thinning is having on the rocks 250 miles down."

.


Related Links
Newcastle University
Tectonic Science and News






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle








TECTONICS
California Faults Moved Quietly After Baja Quake
Pasadena CA (JPL) May 02, 2014
A new NASA study finds that a major 2010 earthquake in northern Mexico triggered quiet, non-shaking motions on several Southern California faults that released as much energy as a magnitude 4.9 to 5.3 earthquake. The quiet motion associated with the widely felt, magnitude 7.2 earthquake centered in northern Baja California in Mexico, in April 2010 was discovered in before-and-after radar i ... read more


TECTONICS
Asian consortium lifts bid for Australian food manufacturer

Corn dwarfed by temperature dip suitable for growing in caves, mines

Winners and losers in cereal production from El Nino

Bee biodiversity boosts crop yields

TECTONICS
A Lab in Your Pocket

Molecular Foundry Opens the Door to Better Doping of Semiconductor Nanocrystals

New lab-on-a-chip device overcomes miniaturization problems

US chip giant Intel to pump $6 bn into Israel: minister

TECTONICS
Airbus Group Inc. banners 300th UH-72A helicopter delivery

Belgium asks U.S. for F-16 upgrade equipment

Czechs sign agreement to fly Saab's Gripen fighter for another 12 years

China Southern orders 80 A320 planes: Airbus

TECTONICS
US auto parts maker to outsource interiors to China

Google self-driving car coming around the corner

Nissan venture aims for 20% of China electric car market

Two-stroke scooters are 'super-polluters': study

TECTONICS
Vietnam violence throws snag for US plans in Asia

China to rein supreme in world commodities in 2014: report

China evacuates 3,000 nationals from Vietnam after deadly unrest

Swiss turn down world's highest minimum wage

TECTONICS
Emissions From Forests Influence Very First Stage of Cloud Formation

Emerald ash borers were in US long before first detection

China demand for luxury furniture 'decimating rosewood'

Super-charged tropical trees of Borneo vitally important for global carbon cycling

TECTONICS
Earth Science Applications Travelogue: Maury Estes

GOES-R Propulsion and System Modules Delivered

Experts demonstrate versatility of Sentinel-1

Kazakhstan's First Earth Observation Satellite to Orbit

TECTONICS
Nanoscale heat flow predictions

Harnessing Magnetic Vortices for Making Nanoscale Antennas

New method for measuring the temperature of nanoscale objects discovered

Nanomaterial Outsmarts Ions




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principals for news reporting and research purposes. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA news 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 Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement All images and articles appearing on Space Media Network have been edited or digitally altered in some way. Any requests to remove copyright material will be acted upon in a timely and appropriate manner. Any attempt to extort money from Space Media Network will be ignored and reported to Australian Law Enforcement Agencies as a potential case of financial fraud involving the use of a telephonic carriage device or postal service.