Explorer 9

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Explorer 9
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Explorer 9 before launch
NamesS-56A
Explorer IX
NASA S-56A
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Mission typeAir density research
OperatorNASA
Harvard designation1961 Delta 1
COSPAR ID1961-004A
SATCAT no.00081
Mission duration3 years (achieved)
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Spacecraft properties
SpacecraftExplorer IX
Spacecraft typeAir Density Explorer
BusS-56
ManufacturerLangley Research Center
Launch massTemplate:Cvt
DimensionsTemplate:Cvt diameter
Powersolar cells and
rechargeable batteries
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Start of mission
Launch date16 February 1961,
13:05:00 GMT
RocketScout X-1 (ST-4)
Launch siteWallops Flight Facility, LA-3
ContractorVought
Entered service16 February 1961
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End of mission
Decay date9 April 1964
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Orbital parameters
Reference systemGeocentric orbit[1]
RegimeMedium Earth orbit
Perigee altitudeTemplate:Cvt
Apogee altitudeTemplate:Cvt
Inclination38.91°
Period118.6 minutes
Instruments
Satellite Drag Atmospheric Density
Template:Succession links
Template:Succession links

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Explorer 9, known as S-56A before launch, was a NASA satellite which was launched in February 1961 to study the density and composition of the upper thermosphere and lower exosphere.[2] It was a reflight of the failed Explorer S-56 mission, and consisted of a Template:Cvt, Template:Cvt balloon which was deployed into a medium Earth orbit.[3] The mission was conducted by NASA's Langley Research Center.

Spacecraft

The spacecraft consisted of alternating layers of aluminium foil and Mylar polyester film. Uniformly distributed over the aluminium surface were Template:Cvt-diameter dots of white paint for thermal control. The sphere was packed in a tube Template:Cvt in diameter and Template:Cvt long and mounted in the nose of the fourth stage of its Scout X-1 launch vehicle.[4]

Experiment

Satellite Drag Atmospheric Density

Because of its symmetrical shape, Explorer 9 was selected for use in determining upper atmospheric densities as a function of altitude, latitude, season, and solar activity. Density values near perigee were deduced from sequential observations of the spacecraft position, using optical (Baker-Nunn camera network) and radar tracking techniques. A good discussion of the general techniques used to deduce density values from satellite drag data can be found in L. G. Jacchia and J. Slowey, "Accurate drag determination for eight artificial satellites of atmospheric densities and temperatures", Smithsonian Astrophysical Observatory special report n. 100, Cambridge, Massachusetts, July 1962.[5] This experiment resulted in the successful determination of reasonable density values until the satellite reentered the Earth's atmosphere on 9 April 1964.[6]

Launch

File:Scout X-1 with Explorer 9 Feb 16 1961.JPG
Launch of Explorer 9 on a Scout X-1 (ST-4) on 16 February 1961.

Explorer 9 was launched from Launch Area 3 at the Wallops Flight Facility (WFF), atop a Scout X-1 launch vehicle with the serial number ST-4. It was the first spacecraft launched from Wallops Island to achieve orbit, with one previous attempt having failed. The launch occurred at 13:05:00 GMT on 16 February 1961, and resulted in Explorer 9 being deployed into an orbit with an apogee of Template:Cvt, a perigee of Template:Cvt, 38.91° of inclination and a period of 118.6 minutes.[7] It was assigned the Harvard designation 1961 Delta 1.[8]

Upon separation of the fourth stage, the sphere was inflated by a nitrogen gas bottle, and a separation spring ejected it out into its own orbit. The two hemispheres of aluminium foil were separated with a gap of Mylar at the spacecraft's equator and served as the antenna. A 136 MHz, 15 mW beacon was carried for tracking purposes, but the beacon failed on the first orbit and the SAO Baker-Nunn camera network had to be relied upon for tracking. Power was supplied by solar cells and rechargeable batteries.[1]

The second of six identical air density research satellites to be launched, Explorer 9 was the first to successfully reach orbit. It was still operational when the next satellite in the series, Explorer 19, was launched, allowing simultaneous readings to be taken and compared.[4]

Mission results

Careful and continuous photographic observation of the satellite allowed scientists to conduct an unprecedented survey of the Earth's exosphere. The satellite first confirmed the daily bulge in the upper atmosphere caused by the Sun's heating the air during the day and verified the model of exospheric temperature developed according to other satellite data.[9] It was later discovered that the temperature of the exosphere increased after geomagnetic disturbances in the ionosphere, peaking around five hours after each event.[10] With three years of data, scientists were able to discern a seasonal variation to the exosphere's density, with an increase of 25% observed in winter over summer at a reference latitude of 39°. The delay in the temperature increase resulting from magnetic disturbances was further refined to 5.2 ± 0.4 hours.[11]

Explorer 9 was the first spacecraft placed in orbit by an all-solid launch vehicle and the first spacecraft successfully launched into orbit from Wallops Island. The spacecraft reentered the Earth's atmosphere on 9 April 1964.[1]

Legacy

A replica of the spacecraft, possibly a flight backup, is currently located in the Smithsonian Institution's National Air and Space Museum, although it is not on display.[12]

See also

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References

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  1. ^ a b c Page Module:Citation/CS1/styles.css has no content."Display: Explorer-9 1961-004A". NASA. 28 October 2021. Retrieved 3 November 2021. Public Domain This article incorporates text from this source, which is in the public domain.
  2. ^ Page Module:Citation/CS1/styles.css has no content.Smith, Woody. "Explorer Spacecraft Series". NASA. Retrieved 17 June 2010. Public Domain This article incorporates text from this source, which is in the public domain.
  3. ^ Page Module:Citation/CS1/styles.css has no content.Wade, Mark. "S-56". Encyclopedia Astronautica. Archived from the original on 28 October 2002. Retrieved 17 June 2010.
  4. ^ a b Page Module:Citation/CS1/styles.css has no content.Krebs, Gunter (8 April 2020). "AD A, B, C / (S-56) / Explorer S-56, 9, 19, 24, 39, 57". Gunter's Space Page. Retrieved 7 November 2021.
  5. ^ Page Module:Citation/CS1/styles.css has no content.Jacchia, Luigi G.; Slowey, Jack (1963). "Accurate drag determinations for eight artificial satellites: atmospheric densities and temperatures". Smithsonian Contributions to Astrophysics. 8 (1): 1–99. doi:10.5479/si.00810231.8-1.1. hdl:10088/6623. ISSN 0081-0231.
  6. ^ Page Module:Citation/CS1/styles.css has no content."Experiment: Satellite Drag Atmospheric Density". NASA. 28 October 2021. Retrieved 3 November 2021. Public Domain This article incorporates text from this source, which is in the public domain.
  7. ^ Page Module:Citation/CS1/styles.css has no content.McDowell, Jonathan. "Satellite Catalog". Jonathan's Space Report. Retrieved 17 June 2010.
  8. ^ Page Module:Citation/CS1/styles.css has no content.McDowell, Jonathan (21 July 2021). "Launch Log". Jonathan's Space Report. Retrieved 3 November 2021.
  9. ^ Page Module:Citation/CS1/styles.css has no content.Jacchia, L. G.; Slowey, J. (1962). "Preliminary Analysis of the Atmospheric Drag of the Twelve-Foot Balloon Satellite (1961 δ1)". Sao Special Report. 84. Bibcode:1962SAOSR..84.....J. Retrieved 21 December 2018.
  10. ^ Page Module:Citation/CS1/styles.css has no content."Analysis of the Atmospheric Drag of the Explorer IX satellite from Precisely Reduced Photographic Observations". Retrieved 21 December 2018.
  11. ^ Page Module:Citation/CS1/styles.css has no content.Roemer, M. (1966). "Atmospheric Densities and Temperatures from Precisely Reduced Observations of the Explorer IX Satellite". Sao Special Report. 199. Bibcode:1966SAOSR.199.....R. Retrieved 21 December 2018.
  12. ^ Page Module:Citation/CS1/styles.css has no content."Satellite, Explorer 9, Balloon Replica". National Air and Space Museum. Archived from the original on 22 December 2018. Retrieved 21 December 2018.

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