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Modeling fluid phase transition effects on dynamic behavior of ESDV

2000/05/01 by Haroun Mahgerefteh, Pratik Saha, Ioannis G. Economou · 1 citation
Engineering · Decision Sciences · #Offshore Engineering and Technologies #Nuclear Engineering Thermal-Hydraulics #Scientific Measurement and Uncertainty Evaluation

paper · doi:10.1002/aic.690460512

Abstract

Abstract The characteristics method was employed to elucidate the effects of fluid‐phase transition on the dynamic behavior of emergency shutdown valves following full bore rupture (FBR) of long pipelines containing high‐pressure hydrocarbons. The responses of both check valves and ball valves were simulated. The application of the model to the FBR of the Piper‐Alpha MCP‐01 gas riser reveals that condensation of the gaseous inventory results in a delay in valve activation times, as well as an increase in the amount of inventory released prior to pipeline isolation. However, the magnitude of the pressure surge brought about from having to bring the high‐pressure escaping fluid to rest following emergency isolation was significantly reduced.

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