Space Travel News  
Scientists Use Seismic Waves To Locate Missing Rock Under Tibet

The Tibetan plateau.
by Staff Writers
Champaign IL (SPX) Feb 13, 2007
Geologists at the University of Illinois at Urbana-Champaign have located a huge chunk of Earth's lithosphere that went missing 15 million years ago. By finding the massive block of errant rock beneath Tibet, the researchers are helping solve a long-standing mystery, and clarifying how continents behave when they collide. The Tibetan Plateau and adjacent Himalayan Mountains were created by the movements of vast tectonic plates that make up Earth's outermost layer of rocks, the lithosphere.

About 55 million years ago, the Indian plate crashed into the Eurasian plate, forcing the land to slowly buckle and rise. Containing nearly one-tenth the area of the continental U.S., and averaging 16,000 feet in elevation, the Tibetan Plateau is the world's largest and highest plateau.

Tectonic models of Tibet vary greatly, including ideas such as subduction of the Eurasian plate, subduction of the Indian plate, and thickening of the Eurasian lithosphere. According to this last model, the thickened lithosphere became unstable, and a piece broke off and sank into the deep mantle.

"While attached, this immense piece of mantle lithosphere under Tibet acted as an anchor, holding the land above in place," said Wang-Ping Chen, a professor of geophysics at the U. of I. "Then, about 15 million years ago, the chain broke and the land rose, further raising the high plateau."

Until recently, this tantalizing theory lacked any clear observation to support it. Then doctoral student Tai-Lin (Ellen) Tseng and Chen found the missing anchor.

"This remnant of detached lithosphere provides key evidence for a direct connection between continental collision near the surface and deep-seated dynamics in the mantle," Tseng said.

"Moreover, mantle dynamics ultimately drives tectonism, so the fate of mantle lithosphere under Tibet is fundamental to understanding the full dynamics of collision."

Through a project called Hi-CLIMB -- an integrated study of the Himalayan-Tibetan Continental Lithosphere during Mountain Building, Tseng analyzed seismic signals collected at a number of permanent stations and at many temporary stations to search for the missing mass.

Hi-CLIMB created a line of seismic monitoring stations that extended from the plains of India, through Nepal, across the Himalayas and into central Tibet. "With more than 200 station deployments, Hi-CLIMB is the largest broadband (high-resolution) seismic experiment conducted to date," said Chen, who is one of the project's two principal investigators.

Using high-resolution seismic profiles recorded at many stations, Tseng precisely measured the velocities of seismic waves traveling beneath the region at depths of 300 to 700 kilometers. Because seismic waves travel faster through colder rock, Tseng was able to discern the positions of detached, cold lithosphere from her data. "We not only found the missing piece of cold lithosphere, but also were able to reconstruct the positions of tectonic plates back to 15 million years ago," Tseng said. "It therefore seems much more likely that instability in the thickening lithosphere was partially responsible for forming the Tibetan Plateau, rather than the wholesale subduction of one of the tectonic plates."

Other evidence, including the age and the distribution of volcanic rocks and extrapolation of current ground motion in Tibet, the researchers say, also indicates the remnant lithosphere detached about 15 million years ago.

Chen and Tseng present their findings in a paper to appear in the Journal of Geophysical Research. The National Science Foundation funded the work.

Related Links
University of Illinois at Urbana-Champaign
When the Earth Quakes
Tectonic Science and News



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


Methane Bubbling Through Seafloor Creates Undersea Hills
Moss Landing CA (SPX) Feb 12, 2007
According to a recent paper published by MBARI geologists and their colleagues, methane gas bubbling through seafloor sediments has created hundreds of low hills on the floor of the Arctic Ocean. These enigmatic features, which can grow up to 40 meters (130 feet) tall and several hundred meters across, have puzzled scientists ever since they were first discovered in the 1940s.







  • NASA Solicits Ideas For Constellation Ground Work
  • New Space Technology Provides Less Shake Rattle And Roll
  • DemoFlight 2 Launch Update
  • SpaceDev Conducts Hot-Fire Test Of Hybrid Upper Stage Rocket Motor

  • Research Rocket Launches From Poker Flat Through Pulsating Aurora
  • Six Aurora-Research Rockets To Launch From Poker Flat
  • Sea Launch Zenit Explodes On Pad
  • Sea Launch Operations To Be Resumed Despite Liftoff Failure

  • NASA's Shuttle Atlantis Rolls to Vehicle Assembly Building
  • Shuttle Atlantis Processing Picks Up The Pace
  • Space Shuttle Launch Rescheduled

  • Russia To Launch Laboratory Module To ISS In 2009
  • Station Recovers From Power Loss
  • Two US Astronauts Finish Third Spacewalk Outside ISS
  • ISS Crew Conduct Back To Back Spacewalks Over Several Days

  • Students Working On Space Suit Redesign For NASA
  • Astronauts' Image Falls Back To Earth In Love Triangle Case
  • US Astronaut Charged With Attempted Murder Of Love Rival
  • NASA To Review Screening Process Amid Love-Triangle Case

  • If You Love Me Order Some Purple Space Potatoes
  • China, US Have No Space Cooperation
  • China To Build Fourth Satellite Launching Center In Hainan
  • Baker's Dozen Via For Chinese Lunar Rover Design

  • Robotic Exoskeleton Replaces Muscle Work
  • Robotic Arm Aids Stroke Victims
  • Scientists Study Adhesive Capabilities Of Geckos To Develop Surveillance Or Inspection Robots
  • Japanese Women To Try Lipstick With Touch Of Button

  • Opportunity Flips 10 Kilometers And Tests New Drive Software
  • Animation Of Newly Uploaded Mars Exploration Driving Capability
  • The First Hiking Maps Of Mars
  • Spring Comes To Spirit At Gusev

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. 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 Space.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement