Predicting the vulnerability of spacecraft components: Modelling debris impact effects through vulnerable-zones

Author:

Trisolini Mirko,Lewis Hugh G.,Colombo Camilla

Funder

EPSRC DTP/CDT

Publisher

Elsevier BV

Subject

Space and Planetary Science,Aerospace Engineering,General Earth and Planetary Sciences,Atmospheric Science,Geophysics,Astronomy and Astrophysics

Reference44 articles.

1. Bjorkman, M.D., Christiansen, E.L., Lear, D.M., 2014. Bumper 3 Software User Manual. Technical Report NASA/TM-2014-218559. NASA.

2. Bunte, K., Farahvashi, E., Miller, A., 2017. Methods to reduce uncertainties in spacecraft vulnearbility predictions. In: 7th European Conference on Space Debris, ESOC, Darmstadt, Germany.

3. Bunte, K.D., Destefanis, R., Drolshagen, G., 2009. Spacecraft Shielding Layout and Optimisation Using ESABASE2/Debris. In: Proc. 5th European Conference on Space Debris.

4. Christiansen, E., Arnold, J., Corsaro, B., Davis, A., Giovane, F., Hyde, J., Ratliff, M., 2009. Handbook for Designing MMOD Protection. Technical Report NASA/TM-2009-214785. NASA Johnson Space Center. Huston, Texas, USA.

5. Characterizing debris clouds created in oblique orbital debris particle impact;Depczuk;J. Aerospace Eng.,2003

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