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Propulsion and power from a rotating electrodynamic tether at Jupiter

  • Christopher S. Talley
  • , James D. Moore
  • , Dennis Gallagher
  • , Les Johnson
  • ManTech International Corporation
  • NASA Marshall Space Flight Center

Research output: AbstractPaperpeer-review

2 Scopus citations

Abstract

The Jovian system with its rapid planetary rotation and strong magnetic field presents exciting opportunities for the use of electrodynamic (ED) tethers. Previous analysis for a radial, 1Okm length tether demonstrated the possibility of propulsive forces as large as 50 Newtons near the planet. For orbital positions beyond about 2.5 Jovian radii, an ED tether can simultaneously be used for power and increases in the orbital altitude. Although the previous study demonstrated the physical feasibility of ED tether use at Jupiter, it did not address the issues of limited gravity gradient force for tether orientation and the practical use of this technology in an engineered system. This presentation will discuss these issues and current progress in an ongoing science/engineering transitional study.

Original languageEnglish
DOIs
StatePublished - 2000
Externally publishedYes
Event38th Aerospace Sciences Meeting and Exhibit 2000 - Reno, NV, United States
Duration: Jan 10 2000Jan 13 2000

Conference

Conference38th Aerospace Sciences Meeting and Exhibit 2000
Country/TerritoryUnited States
CityReno, NV
Period01/10/0001/13/00

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