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STS-75 press kit

NASA · 40 pages · text from the file's own layer

This is NASA's press kit for Space Shuttle mission STS-75, dated February 1996 and later edited by Richard W. Orloff. It covers Columbia's planned 13-day flight carrying the Italian Tethered Satellite System reflight (TSS-1R) and the third United States Microgravity Payload. The kit sets out launch and landing plans, abort modes, the timeline, payload weights, crew duties, the tether's science objectives and investigators, and crew biographies. It does not mention any unidentified objects.

  • p. 2 …The NASA insignia design for space shuttle flights is reserved for use by the astronauts and…
  • p. 3 …Ed Campion Policy/Management 202/358-1778 NASA Headquarters Washington, DC Rob Navias Johnson Space Center…
  • p. 5 …96-27 REFLIGHT OF TETHERED SATELLITE HIGHLIGHTS STS-75 NASA's second Shuttle mission of the…
  • p. 6 …Orloff, 01/2001/Page 6 MEDIA SERVICES INFORMATION NASA Television Transmission NASA television is available through…
  • p. 15 …Orloff, 01/2001/Page 15 TETHERED SATELLITE SYSTEM REFLIGHT (TSS-1R) NASA and ASI long have…
  • p. 16 …Scientific Investigations Of the TSS-1R mission's 12 scientific investigations, NASA will provide six, ASI…
  • p. 18 …Manager Mike Calabrese, Office of Space Science, NASA Headquarters, Washington, DC. Responsible for project management at…
  • p. 22 …Fripp, NASA Langley Research Center, Langley, VA Objective. The speed and the amount of information that…
  • p. 24 …The investigation known as MEPHISTO is a cooperative program between NASA, the French Space Agency and…
  • p. 25 …Richard DeLombard, NASA Lewis Research Center, Cleveland, OH Objective. When the Space Shuttle is in orbit…
  • p. 26 …Sacksteder, NASA Lewis Research Center, Cleveland, OH Objective. On Earth, gravity causes air motion known as…
  • p. 27 …which was formed in 1985 as a NASA Center for the Commercial Development of Space. The…
  • p. 30 …It may not be used to state or imply the endorsement by NASA or by any…
  • p. 31 …Allen (Lieutenant Colonel, USMC) NASA Astronaut BIRTHPLACE AND DATE: Born August 4, 1955, in Philadelphia, PA…
  • p. 32 …Selected by NASA in March 1992, Scott reported to the Johnson Space Center in August 1992…
  • p. 33 …Hoffman was awarded NASA Space Flight Medals in 1985, 1991, 1992 and 1994, NASA Exceptional Service…
  • p. 34 …Satellite System (TSS), a joint project between NASA and the Italian Space Agency. Dr. Hoffman had…
  • p. 35 …Lieutenant Colonel in the Italian Air Force. NASA EXPERIENCE: Cheli reported to the Johnson Space Center…
  • p. 36 …Under agreement between ESA and NASA he joined the NASA astronaut candidates selected in May 1980…
  • p. 37 …Chang-Diaz (Ph.D.) NASA Astronaut BIRTHPLACE AND DATE: Born April 5, 1950, in San Jose…
  • p. 38 …Orloff, 01/2001/Page 38 NASA EXPERIENCE: Selected by NASA in May 1980, Dr. Chang- Diaz…
  • p. 39 …In 1991 he was relocated to the NASA Johnson Space Center to follow the training for…
Edited by Richard W. Orloff, 01/2001/Page 15
TETHERED SATELLITE SYSTEM REFLIGHT (TSS-1R)
NASA and ASI long have planned the TSS reflight but a formal commitment awaited U.S. congressional
approval for NASA to spend funds on the project. TSS originally was flown on the Space Shuttle STS-46
mission launched in July 1992. TSS deployment was curtailed when mechanical interference in the
deployer reel assembly prevented full deployment of the satellite. The TSS reflight will focus on science
objectives not accomplished on the STS-46 mission.
The TSS flight will be a scientific adventure aimed at understanding the possibilities for putting tether
technology to work in space for many uses. TSS-1R will take advantage of the knowledge gained about
tether dynamics during the first TSS mission. This mission will gather more crucial information needed to
test theories for a variety of future tether applications.
For example, by reversing the direction of the current in the tether, the force caused by its interaction with
Earth's magnetic field could put an object in motion, serving to boost a spacecraft's orbit without using
precious fuel. Also, a satellite could be moved up and down in orbit by releasing a tethered body from a
primary spacecraft to position it into a desired location. Deploying a tether downwards towards Earth could
place movable science platforms in hard-to-study atmospheric zones, such as the ozone region over the
South Pole.
Tethers also may be used as antennas to transmit extremely low frequency signals to Earth. Such low
frequency waves can penetrate land and sea water providing for communications not possible with
standard radio. Tethers could place instrumented experimental aircraft models in the region 60 to 90 miles
(100 to 150 kilometers) above Earth to gain a more accurate evaluation than is possible in wind tunnels,
which only partially simulate flight conditions. It may one day be possible to create artificial gravity for
long-duration missions, such as the first human trip to Mars, by using tethered systems.
TSS-1R experiments support seven mission objectives:
1. Determine the amount of electrical current collected and voltage produced by the Tethered Satellite-
Shuttle system as it interacts with Earth's ionospheric environment of charged gas (plasma) and its
magnetic and electric fields.
2. Understand how a tethered satellite makes contact with the ionospheric plasma and how an electrical
current is extracted.
3. Demonstrate electrical power generation, as a product of current and voltage, to determine how such a
system could be used as a space-based power source.
4. Verify tether control and dynamics from short (1.2 mile/2 kilometer) to long (12.8 mile/20.7
kilometer) deployment ranges.
5. Demonstrate how neutral gas affects the satellite's plasma sheath and current collection, possibly
enhancing tether-produced current.
6. Determine how electrical current is conducted through the near-Earth plasma by measuring waves
broadcast as the tethered satellite passes over a series of ground-based receiving stations, as well as
how the tether acts as a low- frequency-band antenna.
7. Learn to control tether motion by collecting data about how current flow produces force.

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