Issue |
Volume 8, 2016
Progress in Propulsion Physics
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|
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Page(s) | 213 - 240 | |
Section | Solid and hybrid propulsion | |
DOI | https://doi.org/10.1051/eucass/201608213 | |
Published online | 06 July 2016 |
Analysis of pressure blips in aft-finocyl solid rocket motor
Sapienza University of Rome Department of Mechanical and
Aerospace Engineering
18 Via Eudossiana,
Rome
I-00184,
Italy
Ballistic anomalies have frequently occurred during the firing of several solid rocket motors (SRMs) (Inertial Upper Stage, Space Shuttle Redesigned SRM (RSRM) and Titan IV SRM Upgrade (SRMU)), producing even relevant and unexpected variations of the SRM pressure trace from its nominal profile. This paper has the purpose to provide a numerical analysis of the following possible causes of ballistic anomalies in SRMs: an inert object discharge, a slag ejection, and an unexpected increase in the propellant burning rate or in the combustion surface. The SRM configuration under investigation is an aft-finocyl SRM with a first-stage/small booster design. The numerical simulations are performed with a quasi-one-dimensional (Q1D) unsteady model of the SRM internal ballistics, properly tailored to model each possible cause of the ballistic anomalies. The results have shown that a classification based on the head-end pressure (HEP) signature, relating each other the HEP shape and the ballistic anomaly cause, can be made. For each cause of ballistic anomalies, a deepened discussion of the parameters driving the HEP signatures is provided, as well as qualitative and quantitative assessments of the resultant pressure signals.
© Owned by the authors, published by EDP Sciences, 2016