Seismic Performance Assessment of a Moment-Resisting Frame Steel Warehouse Provided with Overhead Crane

Author:

Lisperguier Nicolás1,López Álvaro1ORCID,Vielma Juan C.1ORCID

Affiliation:

1. School of Civil Engineering, Pontificia Universidad Católica de Valparaíso, Valparaiso 2340000, Chile

Abstract

The purpose of this study is to analyze the nonlinear behavior of a steel warehouse structured by moment-resistant frames, which utilizes an overhead crane on its interior brackets and as an external load of the weight of the lining panels. The analysis methods used are (i) pushover analysis, which consists of applying an incremental force in the transverse and longitudinal direction to obtain the capacity curve of the structure; (ii) time-history analysis, in which different records of destructive earthquakes that occurred in Chile are used in order to analyze the response of the structure to these loads. The results indicate that the transverse direction is more ductile than the Y direction of the structure within the pushover and time-history methods but not using the N2 method. It is also found that most of the columns are within the life safety and collapse prevention criteria. It is concluded that most of the analyses agree with each other and with what is expected, except for the N2 method, which contradicts the results of the time-history analysis, so the N2 method would not be suitable for this type of structure. In addition, it has been determined that the overhead crane loads do not substantially affect the seismic performance of the warehouse.

Funder

Agencia Nacional de Investigación y Desarrollo

Publisher

MDPI AG

Subject

General Materials Science

Reference59 articles.

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2. Hamburger, R.O., and Malley, J.O. (2016). NEHRP Seismic Design Technical Brief No. 2-Seismic Design of Steel Special Moment Frames: A Guide for Practicing Engineers, NIST. [2nd ed.].

3. Pullout tests on the connection to an existing foundation of a steel warehouse rebuilt after the 2012 Emilia (Italy) earthquakes;Minghini;Bull. Earthq. Eng.,2021

4. Richard, J., Koboevic, S., and Tremblay, R. (2011, January 25–28). Seismic design and response of heavy industrial steel buildings. Proceedings of the COMPDYN 2011 3rd ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering, Corfu, Greece.

5. Formisano, A., Di Lorenzo, G., and Landolfo, R. (2019, January 16–18). Non-Linear Analyses and Fragility Curves of European Existing Single-Story Steel Buildings. Proceedings of the Central European Symposium on Thermophysics 2019 (CEST), Banska Bystrica, Slovakia.

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