Orbiting Carbon Observatory 2 Explained

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Orbiting Carbon Observatory-2
(OCO-2)
Mission Type:Climatology
Operator:NASA
Cospar Id:2014-035A
Satcat:40059
Website:JPL OCO-2 Mission
Mission Duration:2 years (nominal)
Elapsed:
Spacecraft Bus:LEOStar-2
Manufacturer:Orbital Sciences[1]
Launch Mass:454kg (1,001lb)
Dry Mass:409kg (902lb)
Payload Mass:131kg (289lb)
Dimensions:Stowed: 6.96xx
Power:815 W
Launch Date: UTC
Launch Rocket:Delta II 7320-10C
Launch Site:Vandenberg, SLC-2W
Launch Contractor:United Launch Alliance
Orbit Reference:Geocentric
Orbit Regime:Sun-synchronous
Orbit Periapsis:701.1km (435.6miles)
Orbit Apoapsis:703.81km (437.33miles)
Orbit Inclination:98.2°
Orbit Period:98.82 minutes
Orbit Mean Motion:14.57 rev / day
Orbit Velocity:7.5km/s
Orbit Epoch:19 September 2016, 10:55:06 UTC[2]
Orbit Rev Number:11,796
Apsis:gee
Telescope Type:Near-IR Cassegrain
Telescope Focal Ratio:ƒ/1.8
Telescope Wavelength:2.06 microns
1.61 microns
0.765 microns
Instruments:3 grating spectrometers
Insignia:Orbiting Carbon Observatory-2 Logo.jpg
Insignia Size:150x150px

Orbiting Carbon Observatory-2 (OCO-2) is an American environmental science satellite which launched on 2 July 2014. A NASA mission, it is a replacement for the Orbiting Carbon Observatory which was lost in a launch failure in 2009. It is the second successful high-precision (better than 0.3%) observing satellite, after GOSAT.

Mission overview

The OCO-2 satellite was built by Orbital Sciences Corporation, based around the LEOStar-2 bus.[3] The spacecraft is being used to study carbon dioxide concentrations and distributions in the atmosphere.[4]

OCO-2 was ordered after the original OCO spacecraft failed to achieve orbit. During the first satellite's launch atop a Taurus-XL in February 2009, the payload fairing failed to separate from around the spacecraft and the rocket did not have sufficient power to enter orbit with its additional mass. Although a Taurus launch was initially contracted for the reflight, the launch contract was cancelled after the same malfunction occurred on the launch of the Glory satellite two years later.[5]

United Launch Alliance launched OCO-2 using a Delta II rocket at the beginning of a 30-second launch window at 09:56 UTC (2:56 PDT) on 2 July 2014. Flying in the 7320-10C configuration, the rocket launched from Space Launch Complex 2W at Vandenberg Air Force Base.[6] The initial launch attempt on 1 July at 09:56:44 UTC was scrubbed at 46 seconds on the countdown clock due to a faulty valve on the water suppression system, used to flow water on the launch pad to dampen the acoustic energy during launch.[7]

OCO-2 joined the A-train satellite constellation, becoming the sixth satellite in the group. Members of the A-train fly very close together in Sun-synchronous orbit, to make nearly simultaneous measurements of Earth. A particularly short launch window of 30 seconds was necessary to achieve a proper position in the train.[8] As of it was in an orbit with a perigee of 701.1km (435.6miles), an apogee of 703.81km (437.33miles) and a 98.2° inclination.[2]

The mission is expected to cost, including design, development, launch and operations.[1]

Column measurements

Rather than directly measuring concentrations of carbon dioxide in the atmosphere, OCO-2 records how much of the sunlight reflected off the Earth is absorbed by molecules in an air column.[9] OCO-2 makes measurements in three different spectral bands over four to eight different footprints of approximately 1.29x each.[10] About 24 soundings are collected per second while in sunlight and over 10% of these are sufficiently cloud free for further analysis. One spectral band is used for column measurements of oxygen (A-band 0.765 microns), and two are used for column measurements of carbon dioxide (weak band 1.61 microns, strong band 2.06 microns).

In the retrieval algorithm measurements from the three bands are combined to yield column-averaged dry-air mole fractions of carbon dioxide. Because these are dry-air mole fractions, these measurements do not change with water content or surface pressure. Because the molecular oxygen content of the atmosphere (i.e. excluding the oxygen in water vapour) is well known to be 20.95%, oxygen is used as a measure of the total dry air column. To ensure these measurements are traceable to the World Meteorological Organization, OCO-2 measurements are carefully compared with measurements by the Total Carbon Column Observing Network (TCCON).

Data products

Mission data are provided to the public by the NASA Goddard Earth Science Data and Information Services Center (GES DISC). The Level 1B data product is the least processed and contains records for all collected soundings (about 74,000 soundings per orbit). The Level 2 product contains estimates of the column-averaged dry-air mole fractions of carbon dioxide, among other parameters such as surface albedo and aerosol content. The Level 3 product consists of global maps of carbon dioxide concentrations developed by OCO-2 scientists.

See also

References

Bibliography

External links

Notes and References

  1. Web site: Orbiting Carbon Observatory-2 Launch. Press Kit. NASA. July 2014. 16 May 2015.
  2. Web site: OCO-2 Orbit. Heavens-above.com . Peat. Chris. 19 September 2016. 20 September 2016.
  3. Web site: OCO 1, 2 (ESSP 5). Gunter's Space Page. Gunter. Krebs.
  4. News: Carbon dioxide-sniffing spacecraft set to launch. Spaceflight Now. 28 June 2014. 1 July 2014.
  5. News: ULA Delta II launch with OCO-2 rescheduled for Wednesday. NASA Spaceflight. William. Graham. 30 June 2014. 1 July 2014. 20 April 2020. https://web.archive.org/web/20200420170730/http://www.nasaspaceflight.com/2014/06/delta-ii-oco-2-launch-vandenberg/. dead.
  6. Web site: Delta II OCO-2 Mission. United Launch Alliance. 1 July 2014.
  7. Web site: Launch of NASA's Orbiting Carbon Observatory-2 Rescheduled for July 2. NASA. 1 July 2014. 1 July 2014.
  8. Web site: FiveThings About OCO-2. NASA. Rosalie. Murphy. 27 June 2014. 2 July 2014.
  9. Web site: OCO-2: Instrument. https://web.archive.org/web/20070523164822/http://oco.jpl.nasa.gov/Observatory/Instrument/. dead. 23 May 2007. NASAJet Propulsion Laboratory. 19 March 2017.
  10. Book: http://atrain.nasa.gov/publications/OCO.pdf. Orbiting Carbon Observatory. Earth Science Reference Handbook. NASA. Claire L.. Parkinson. Alan. Ward. Michael D.. King. 199–203. 2006. 14 May 2015.