Space Industry and Business News  
Martian Clouds Pass By On A Winter Afternoon

Image Credit: NASA/JPL/Texas, A and M/Cornell. For larger image click here.
by Staff Writers
Pasadena CA (JPL) Jan 31, 2007
NASA's Mars Exploration Rover Opportunity captured a view of wispy afternoon clouds, not unlike fair weather clouds on Earth, passing overhead on the rover's 956th sol, or Martian day (Oct. 2, 2006). With Opportunity facing northeast, the clouds appear to drift gently toward the west in this movie taken with the rover's navigation camera. The 10 frames, taken 32 seconds apart, show the formation and evolution of what are likely mid-level, convective water clouds.

Such clouds are common near Mars' equator at this time of the Martian year. They have been observed by both of NASA's Mars Exploration Rovers, by satellites orbiting Mars, and by the Hubble Space Telescope.

In this case, the clouds appear to develop at a fixed location, in the center of the frame about 25 degrees above the horizon. This style of origin suggests that a thermal plume is rising over a surface feature. In spite of apparent winds aloft, the thermal plume appears to remain stationary for the 5-minute duration of the movie.

Though scientists have determined from the images that the wind bearing is east-northeast, approximately 80 degrees, it is not possible on the basis of the movie to unambiguously determine the height and speed of the clouds.

Scientists estimate, based on models of atmospheric wind profiles and the apparent displacement of the clouds, that all of the clouds in the movie are at about the same height somewhere between 5 kilometers and 25 kilometers (3 to 20 miles) above the surface. The clouds are estimated to be moving at 2.5 meters per second, if they are low, to 12.5 meters per second, if they are high (8 feet per second to 41 feet per second).

Like clouds on Earth, these Martian clouds are probably composed of ice crystals and possibly supercooled water droplets. They are similar in appearance to terrestrial cirrocumulus or high altocumulus clouds. On Earth, such clouds are relatively transient and consist of small, individual cloudlets arranged in rippled patterns.

They usually form 6 kilometers to 12 kilometers (4 to 7 miles) above Earth's surface by a process known as convection, during which warm air rises and cools, with clouds condensing from the moist air once it has cooled sufficiently.

These Martian clouds appear to be associated with a broader layer of ice-crystal clouds fanning out toward the upper right of the frames at the end of the movie. This is similar to the occurrence of terrestrial cirrocumulus and altocumulus clouds within layers of cirrus or cirrostratus clouds on Earth. Also apparent in this movie are prominent waves in the clouds, a result of the effect of gravity waves on cloud thickness, as on Earth.

Though both rovers now have the ability to autonomously detect clouds, these images were taken prior to the first use of the new abilities. The images shown here were stored on Opportunity and were transmitted to Earth on sol 1056 (Jan. 12, 2007) during a routine communications pass.

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



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


Spirit Studies Layered Rocks And Wind-Blown Drifts
Pasadena CA (JPL) Jan 30, 2007
With the rover's third Martian spring just around the corner, Spirit is healthy and has started acquiring movies with the navigation camera in search of dust devils wheeling across the terrain. Spring officially begins on Martian day, or sol 1103 (Feb. 8, 2007). During the past week, Spirit acquired microscopic images of a soil target called "Londonderry," which is an active wind drift shaped by the motion of bouncing sand grains.







  • New Damage And Bad Weather Delay Asian Internet Repairs
  • Asia Turns To Time-Tested Solution For Damaged Internet Cables
  • Chinese Web Could Remain Slow Until Late January
  • 10000 Chinese Domain Names Vanish Amid Web Chaos

  • Sea Launch Zenit Explodes On Pad
  • Sea Launch Operations To Be Resumed Despite Liftoff Failure
  • SpaceWorks Engineering Releases Study On Emerging Commercial Transport Services To ISS
  • JOULE II Launches With Success At Poker Flat

  • Bats In Flight Reveal Unexpected Aerodynamics
  • Lockheed Martin And Boeing Form Strategic Alliance To Promote Next-Gen Air Transportation System
  • Time to test the Guardian Missile Defense System For Commercial Aircraft
  • Operational Testing And Evaluation Of Guardian Commercial Airline Anti-Missile System Begins

  • Alcatel Wins Italian Military Communications Satellite Deal
  • Northrop Grumman Integrates All Phased Array Antennas On First Advanced EHF Flight Payload
  • Boeing And US Air Force Demonstrate Advanced Airborne Networking First
  • Raytheon To Be Prime Contractor On Radar Common Data Link Program

  • Space Inspires Fashion
  • Raytheon Antennas Will Perform More Than Twice Design Life
  • Terminal High Altitude Area Defense Radar Tested In Integrated Flight
  • Surprising Transition Observed When Flowing Grains Become Too Jam Packed To Move

  • Northrop Grumman Appoints Joseph Ensor Vice President Of Surveillance And Remote Sensing
  • Swedish Space Corporation Appoints New CEO
  • Solar Night Industries Announces Expansion into Colorado
  • Ascent Solar Hires Vice President of Business Development

  • First Thai Observation Satellite To Be Orbited In October
  • Space Technology Can Help Ailing Agri Sector: Kasturirangan
  • New Sensor To Be A Boon To Astronomers
  • Russia's Putin, India Call For 'Weapons Free' Space

  • Activists Hunting Japanese Whalers Offer Cash Reward For GPS Coordinates
  • South Korea's Port Of Busan To Use Savi Networks SaviTrak
  • Russia And India Sign Agreements On Glonass Navigation System
  • Russian Glonass Navigation System Available To India

  • 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