Manage cookies
This site uses cookies to collect information about your browsing activities in order to provide you with more relevant content and promotional materials, and help us understand your interests and enhance the site. Visit our cookie policy to learn more.
Manage cookies
Cookie Settings
Cookies necessary for the correct operation of the site are always enabled.
Other cookies are configurable.
Essential cookies
Always On. These cookies are essential so that you can use the website and use its functions. They cannot be turned off. They're set in response to requests made by you, such as setting your privacy preferences, logging in or filling in forms.
Analytics cookies
Disabled
These cookies collect information to help us understand how our Websites are being used or how effective our marketing campaigns are, or to help us customise our Websites for you. See a list of the analytics cookies we use here.
Advertising cookies
Disabled
These cookies provide advertising companies with information about your online activity to help them deliver more relevant online advertising to you or to limit how many times you see an ad. This information may be shared with other advertising companies. See a list of the advertising cookies we use here.
Seismic fragility assessment of building-type structures in oil refineries | Resilience Guard Publications
Home  ›  Insights  ›  Publications  ›  Bulletin of Earthquake Engineering
Peer reviewed journal article

Seismic fragility assessment of building-type structures in oil refineries

A seismic fragility assessment methodology for equipment supporting reinforced concrete and steel buildings typical to oil refineries, using hazard consistent ground motions and reduced order models to obtain seismic demand through incremental dynamic analysis.

Citation

Kazantzi, A.K., Karaferis, N.D., Melissianos, V.E., Bakalis, K., Vamvatsikos, D. (2022). Seismic fragility assessment of building-type structures in oil refineries. Bulletin of Earthquake Engineering, 20, 6853 to 6876.

Read the full article via DOI ›
https://doi.org/10.1007/s10518-022-01476-y

Summary

Oil refineries concentrate high value, high hazard operations in a small number of structures whose failure carries consequences far beyond the asset itself, from supply interruption to environmental and safety events. This paper sets out a seismic fragility assessment methodology for the reinforced concrete and steel buildings that support critical equipment across a refinery. Using a suite of hazard consistent ground motions and reduced order models, the authors perform incremental dynamic analysis to obtain the seismic demand on each structural system, then define limit state capacities against drift and floor acceleration sensitive failure modes, treating both the supporting structure and the nested non structural process equipment. Particular care is taken over how demand and capacity are represented, so the result is a transparent, repeatable roadmap that designers and facility managers can apply to mitigate the risk of failure before an earthquake, prioritise strengthening, and feed quantified fragilities into the wider seismic risk assessment of the site. For Resilience Guard, work of this kind underpins the operational resilience of energy and critical infrastructure clients, where continuity planning has to rest on a defensible understanding of how physical assets actually behave under extreme load.

About this research

This work forms part of Resilience Guard's contribution to European research, where the firm's consultants develop and test methods in Horizon 2020 and Horizon Europe consortia and apply them in client engagements. See the research portfolio for the projects behind the publications, and the case studies for the practice they inform.

More from the library
Start the conversation

Put research grade methods behind your programme.

If a publication here touches your risk landscape, tell us which. The authors are the consultants you would work with. We respond within 24 hours.

Book a consultation
All consultations are treated with strict confidentiality.