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  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
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Performance Criteria for Liquid Storage Tanks and Piping Systems Subjected to Seismic Loading

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Autor
Vathi M., Karamanos S.A., Kapogiannis I.A., Spiliopoulos K.V.
Datum
2017
Language
en
DOI
10.1115/1.4036916
Schlagwort
Buckling
Digital storage
Fatigue of materials
Liquids
Nozzles
Piping systems
Seismic design
Seismology
Tanks (containers)
Earthquake analysis
Elephant's foot buckling
Industrial components
Liquid storage tanks
Loss of containment
Low cycle fatigues
Performance based design
Performance criterion
Failure (mechanical)
American Society of Mechanical Engineers (ASME)
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Zusammenfassung
In this paper, performance criteria for the seismic design of industrial liquid storage tanks and piping systems are proposed, aimed at introducing those industrial components into a performance-based design (PBD) framework. Considering "loss of containment" as the ultimate damage state, the proposed limit states are quantified in terms of local quantities obtained from a simple and efficient earthquake analysis. Liquid storage tanks and the corresponding principal failure modes (elephant's foot buckling, roof damage, base plate failure, anchorage failure, and nozzle damage) are examined first. Subsequently, limit states for piping systems are presented in terms of local strain at specific piping components (elbows, Tees, and nozzles) against ultimate strain capacity (tensile and compressive) and low-cycle fatigue. Modeling issues for liquid storage tanks and piping systems are also discussed, compared successfully with available experimental data, and simple and efficient analysis tools are proposed, toward reliable estimates of local strain demand. Using the above reliable numerical models, the proposed damage states are examined in two case studies: (a) a liquid storage tank and (b) a piping system, both located in areas of high seismicity. © 2017 by ASME.
URI
http://hdl.handle.net/11615/80508
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