Subscribe free to our newsletters via your
. Space Travel News .




MARSDAILY
NASA Spacecraft Detects Changes in Martian Sand Dunes
by Staff Writers
Pasadena CA (JPL) May 11, 2012


File image.

NASA's Mars Reconnaissance Orbiter has revealed that movement in sand dune fields on the Red Planet occurs on a surprisingly large scale, about the same as in dune fields on Earth. This is unexpected because Mars has a much thinner atmosphere than Earth, is only about one percent as dense, and its high-speed winds are less frequent and weaker than Earth's.

For years, researchers debated whether sand dunes observed on Mars were mostly fossil features related to past climate, rather than currently active. In the past two years, researchers using images from Mars Reconnaissance Orbiter's High Resolution Imaging Science Experiment (HiRISE) camera have detected and reported sand movement.

Now, scientists using HiRISE images have determined that entire dunes as thick as 200 feet (61 meters) are moving as coherent units across the Martian landscape. The study was published online by the journal Nature.

"This exciting discovery will inform scientists trying to better understand the changing surface conditions of Mars on a more global scale," said Doug McCuistion, director, NASA's Mars Exploration Program, Washington. "This improved understanding of surface dynamics will provide vital information in planning future robotic and human Mars exploration missions."

Researchers analyzed before-and-after images using a new software tool developed at the California Institute of Technology (Caltech) in Pasadena, Calif. The tool measured changes in the position of sand ripples, revealing the ripples move faster the higher up they are on a dune.

The study examined images taken in 2007 and 2010 of the Nili Patera sand dune field located near the Martian equator. By correlating the ripples' movement to their position on the dune, the analysis determined the entire dunes are moving. This allows researchers to estimate the volume, or flux, of moving sand.

"We chose Nili Patera because we knew there was sand motion going on there, and we could quantify it," said Nathan Bridges, a planetary scientist at Johns Hopkins University Applied Physics Laboratory in Laurel, Md., and lead author of the Nature paper. "The Nili dunes also are similar to dunes in places like Antarctica and to other locations on Mars."

The study adds important information about the pace at which blowing sand could be actively eroding rocks on Mars. Using the new information about the volume of sand that is moving, scientists estimate rocks in Nili Patera would be worn away at about the same pace as rocks near sand dunes in Antarctica, where similar sand fluxes occur.

"Our new data shows wind activity is indeed a major agent of evolution of the landscape on Mars," said Jean-Philippe Avouac, Caltech team leader. "This is important because it tells us something about the current state of Mars and how the planet is working today, geologically."

Scientists calculate that if someone stood in the Nili Patera dunes and measured out a one-yard (one-meter) width, they would see more than two cubic yards (1,500 liters) of sand pass by in an Earth year, about as much as in a child's sand box.

"No one had estimates of this flux before," said Bridges. "We had seen with HiRISE that there was dune motion, but it was an open question how much sand could be moving. Now, we can answer that."

Scientists will use the information to understand broader mysteries on Mars, like why so much of the surface appears heavily eroded, how that occurred, and whether it is a current process or it was done in the past. Scientists can now point to sand flux as a mechanism capable of creating significant erosion today on the Red Planet.

The HiRISE camera provides unprecedented resolution in studying the Martian landscape. NASA's Jet Propulsion Laboratory, Pasadena, Calif., a division of Caltech, manages the Mars Reconnaissance Orbiter for NASA's Science Mission Directorate in Washington. Lockheed Martin Space Systems, Denver, built the spacecraft. HiRISE is operated by the University of Arizona and was built by Ball Aerospace and Technologies Corp., Boulder, Colo.

.


Related Links
Mars Reconnaissance Orbiter
Mars News and Information at MarsDaily.com
Lunar Dreams and more






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








MARSDAILY
Technology developed at Caltech measures Martian sand movement
Pasadena CA (SPX) May 10, 2012
Last year, images from NASA's Mars Reconnaissance Orbiter captured sand dunes and ripples moving across the surface of Mars-observations that challenged previously held beliefs that there was not a lot of movement on the red planet's surface. Now, technology developed by a team at the California Institute of Technology (Caltech) has allowed scientists to measure these activities for the very fir ... read more


MARSDAILY
A Soyuz takes shape in French Guiana for the next dual Galileo satellite launch

SpaceX boss admits sleep elusive before ISS launch

Air Force launches 2nd advanced satellite

A trio of Ariane 5 launchers are now at the Spaceport

MARSDAILY
NASA Spacecraft Detects Changes in Martian Sand Dunes

Prof Active In Mission To Determine Climate Change And Life On Mars

Technology developed at Caltech measures Martian sand movement

Russia could join U.S. in Mars mission

MARSDAILY
Perigee "Super Moon" On May 5-6

India's second moon mission Chandrayaan-2 to wait

European Google Lunar X Prize Teams Call For Science Payloads

Russia to Send Manned Mission to Moon by 2030

MARSDAILY
Beyond Pluto And Exploring the Kuiper Belt

Uranus auroras glimpsed from Earth

Herschel images extrasolar analogue of the Kuiper Belt

New Horizons on Approach: 22 AU Down, Just 10 to Go

MARSDAILY
Unseen planet revealed by its gravity

Ultra-cool companion helps reveal giant planets

NASA's Spitzer Sees the Light of Alien 'Super Earth'

Looking for Earths by looking for Jupiters

MARSDAILY
Aerojet's AJ26 Flight Engine Successfully Hot-Fire Tested for Orbital's Antares Rocket

Russia Develops Revolutionary Ammonia Rocket Engine

Dragon Expected to Set Historic Course

Aerojet Completes Testing of Next-Generation Exploration Thruster

MARSDAILY
China's Lunar Docking

Shenzhou-9 may take female astronaut to space

China to launch 100 satellites during 2011-15

Three for Tiangong

MARSDAILY
NASA Dawn Mission Reveals Secrets of Large Asteroid

Asteroid collision that spawned Vesta's asteroid family occurred more recently than thought

Vesta - a planet-like asteroid

You're beautiful, Vesta




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. 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 Media Network on any Web page published or hosted by Space Media Network. Privacy Statement