Mathematics – Logic
Scientific paper
Oct 2004
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2004esasp.557e..37c&link_type=abstract
Proceedings of the 2nd International Conference on Green Propellants for Space Propulsion (ESA SP-557). 7-8 June 2004, Chia Lagu
Mathematics
Logic
Scientific paper
In this frame Vega, with its first three solid stages, will include a number of advanced technological solutions. Further improvements are being considered for evolutions of Ariane 5 in the medium term. The main activities currently performed for the development of HNF-based propellants are presented. The objectives and approach adopted are described. The results obtained on the HNF decomposition mechanism and on the re- and co-crystallisation of HNF with potential propellant ingredients are presented. The experimental activities for the screening of a number of HNF-based propellant candidates are discussed. Current limitations and open points are identified, and the future steps for consolidating the interest and feasibility of an HNF-based propellant development are indicated. For the long term, possible improvements could be achieved through the use of high energetic materials, including oxidiser and/or binders, in advanced propellant formulations. While still paying attention to the cost of the raw material, these formulations offer the advantage of an increased specific impulse, which has a positive impact on the cost of the loaded motor case. The European Space Agency has been pursuing research and technology development activities on HNF and HNF-based propellants to investigate their interest and feasibility for possible future space applications. These propellants seem to offer the potential for performance improvements, and for providing clean exhaust gases.
Bellerby J.
Brotzu A.
Ciucci A.
Frota O.
Leeming B.
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