DocumentCode
2290115
Title
Combining computational-simulations with probabilistic-risk-assessment techniques to analyze launch vehicles
Author
Maggio, Gaspare ; Fragola, Joseph R.
Author_Institution
Sci. Applications Int. Corp., New York, NY, USA
fYear
1995
fDate
16-19 Jan 1995
Firstpage
343
Lastpage
348
Abstract
To assess the overall cost of a launch system the potential losses which may be incurred due to catastrophic failure should also be considered along with the manufacturing and operational costs. The potential for catastrophic failure may be determined by performing a probabilistic risk assessment. Launch vehicles operate under highly transient conditions. In addition, the complex nature of launch systems makes the task of determining the probability of failure responses and consequences, with any reasonable certainty, practically impossible. Launch vehicle dynamics may be studied by the use of computational methods, offering a solution for assessing failure responses. However, the deterministic nature of these methods makes their use incompatible with probabilistic risk assessment. This paper discusses a solution to this dilemma. A semi-deterministic methodology is proposed which combines these two technologies, computational simulation and probabilistic risk assessment, in a synergistic fashion. A matrix based interfacing mechanism was developed which allows information to be transferred from one analysis structure to the other. Although software may be developed to facilitate the transfer process, the methodology may be applied without having to modify any of the existing resources. As computer-based designing and testing becomes the rule and not the exception, this method may offer engineers the capability to integrate risk considerations directly into the design process. Assessing risk during the design phase has the potential of substantially reducing safety related maintenance costs
Keywords
aerospace simulation; failure analysis; matrix algebra; probability; reliability; risk management; simulation; catastrophic failure; computational-simulations; failure responses assessment; launch vehicles analysis; matrix based interfacing mechanism; probabilistic risk assessment; probabilistic-risk-assessment; safety related maintenance costs reduction; semi-deterministic methodology; synergistic fashion; Computational modeling; Costs; Design engineering; Information analysis; Manufacturing; Process design; Risk management; Safety; Testing; Vehicle dynamics;
fLanguage
English
Publisher
ieee
Conference_Titel
Reliability and Maintainability Symposium, 1995. Proceedings., Annual
Conference_Location
Washington, DC
ISSN
0149-144X
Print_ISBN
0-7803-2470-6
Type
conf
DOI
10.1109/RAMS.1995.513267
Filename
513267
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