DocumentCode
3469415
Title
Analysis of safety systems with on-demand and dynamic failure modes
Author
Meshkat, Leila ; Dugan, Joanne Bechta ; Andrews, John D.
Author_Institution
Virginia Univ., Charlottesville, VA, USA
fYear
2000
fDate
2000
Firstpage
14
Lastpage
21
Abstract
An approach for the reliability analysis of systems with on demand and dynamic failure modes is presented. Safety systems such as sprinkler systems or other protection systems are characterized by such failure behavior. They have support subsystems to start up the system on demand, and once they start running, they are prone to dynamic failure. Failure on demand requires an availability analysis of components (typically electromechanical components) which are required to start or support the safety system. Once the safety system is started, it is often reasonable to assume that these support components do not fail while running. Further, these support components may be tested and maintained periodically while not in active use. Dynamic failure refers to the failure while running (once started) of the active components of the safety system. These active components may be fault tolerant and utilize spares or other forms of redundancy, but are not maintainable while in use. In this paper, the authors describe a simple yet powerful approach to combining the availability analysis of the static components with a reliability analysis of the dynamic components. This approach is explained using a hypothetical example sprinkler system, and applied to a water deluge system taken from the offshore industry. The approach is implemented in the fault tree analysis software package, Galileo
Keywords
engineering computing; fault trees; maintenance engineering; safety systems; Galileo fault tree analysis software package; component availability analysis; dynamic failure modes; failure behavior; fault tolerant; offshore industry; on-demand failure modes; protection systems; reliability analysis; safety systems analysis; spares; sprinkler systems; support subsystems; water deluge system; Availability; Failure analysis; Fault tolerance; Fault trees; Maintenance; Power system reliability; Protection; Redundancy; Safety; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Reliability and Maintainability Symposium, 2000. Proceedings. Annual
Conference_Location
Los Angeles, CA
ISSN
0149-144X
Print_ISBN
0-7803-5848-1
Type
conf
DOI
10.1109/RAMS.2000.816277
Filename
816277
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