Predicting System Accidents with Model Analysis During Hybrid SimulationStandard discrete event simulation is commonly used to identify system bottlenecks and starving and blocking conditions in resources and services. The CONFIG hybrid discrete/continuous simulation tool can simulate such conditions in combination with inputs external to the simulation. This provides a means for evaluating the vulnerability to system accidents of a system's design, operating procedures, and control software. System accidents are brought about by complex unexpected interactions among multiple system failures , faulty or misleading sensor data, and inappropriate responses of human operators or software. The flows of resource and product materials play a central role in the hazardous situations that may arise in fluid transport and processing systems. We describe the capabilities of CONFIG for simulation-time linear circuit analysis of fluid flows in the context of model-based hazard analysis. We focus on how CONFIG simulates the static stresses in systems of flow. Unlike other flow-related properties, static stresses (or static potentials) cannot be represented by a set of state equations. The distribution of static stresses is dependent on the specific history of operations performed on a system. We discuss the use of this type of information in hazard analysis of system designs.
Document ID
20100042115
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Malin, Jane T. (NASA Johnson Space Center Houston, TX, United States)
Fleming, Land D. (Hernandez Engineering, Inc. Houston, TX, United States)
Throop, David R. (Boeing Co. Houston, TX, United States)
Date Acquired
August 25, 2013
Publication Date
April 14, 2002
Publication Information
Publication: Proceedings of 2002 Advanced Simulation Technologies Conference