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TRICKY SCIENCE OF AEROBRAKING

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Reduction in spacecraft energy = tighter orbit around planet. HOW DOES IT WORK? HISTORY ... 1st demo'd at Venus with Magellan spacecraft 1994 ... – PowerPoint PPT presentation

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Title: TRICKY SCIENCE OF AEROBRAKING


1
TRICKY SCIENCE OF AEROBRAKING
  • HOW DO WE GET SPACECRAFT TO ORBIT MARS?

2
AEROBRAKING DEFINED
  • The practice of using a planetary atmosphere to
    change orbit of a spacecraft.
  • Atmosphere facilitates the conversion of some
    orbital energy to thermal energy
  • Aerodynamic drag on vehicle caused by particles
    of the atmosphere (drag pass)
  • Net Result velocity change in spacecraft
  • Reduction in spacecraft energy tighter orbit
    around planet

3
HOW DOES IT WORK?
4
HISTORY
  • Relatively new concept
  • 1st demod at Venus with Magellan spacecraft 1994
  • Incorporated into Mars Global Surveyor mission
    1997
  • Numerous problems
  • Odyssey Mission
  • 23 OCT
  • 60-75 days of aerobraking
  • Biggest challenge and biggest risk to mission
  • Side Note
  • Due to recent Martian Chemical Orbiter and
    Martian Polar Lander failures, Odyssey mission
    flag bearer for future Mars missions.

5
ADVANTAGES
  • After Mars Orbit Insertion (MOI) Aerobraking will
    achieve a tight circular orbit around Mars
  • Required for science payload
  • Lessons amount of fuel needed on spacecraft
  • Decrease mass, Save

6
DISADVANTAGES
  • Significantly increases operational complexity
  • Places another major risk element in reliability
    equation

7
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9
LINKS
  • Good Aerobraking Graphic
  • Excellent Description of Aerobraking
  • JPL site
  • Lockheed Martin Aerospace
  • Mars Odyssey Updates
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