Article ID Journal Published Year Pages File Type
1764252 Advances in Space Research 2014 7 Pages PDF
Abstract

•The paper presents an analytical model for tape-tethers probability of survival against debris in LEO orbit.•The model quite accurately follows full numerical results using NASA and ESA debris flux data.•It keeps the complex dependency on tape cross-section dimensions and orbit altitude/inclination.

The low earth orbit (LEO) environment contains a large number of artificial debris, of which a significant portion is due to dead satellites and fragments of satellites resulted from explosions and in-orbit collisions. Deorbiting defunct satellites at the end of their life can be achieved by a successful operation of an Electrodynamic Tether (EDT) system. The effectiveness of an EDT greatly depends on the survivability of the tether, which can become debris itself if cut by debris particles; a tether can be completely cut by debris having some minimal diameter. The objective of this paper is to develop an accurate model using power laws for debris-size ranges, in both ORDEM2000 and MASTER2009 debris flux models, to calculate tape tether survivability. The analytical model, which depends on tape dimensions (width, thickness) and orbital parameters (inclinations, altitudes) is then verified with fully numerical results to compare for different orbit inclinations, altitudes and tape width for both ORDEM2000 and MASTER2009 flux data.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Space and Planetary Science
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