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The finite element method for evaluating the fire behavior of steel structures

Ilias Thanasoulas (DBI - The Danish Institute of Fire and Security Technology, Hvidovre, Denmark) (Department of Civil Engineering, Technical University of Denmark, Lyngby, Denmark)
Dan Lauridsen (DBI - The Danish Institute of Fire and Security Technology, Hvidovre, Denmark)
Bjarne Paulsen Husted (DBI - The Danish Institute of Fire and Security Technology, Hvidovre, Denmark) (Department of Civil Engineering, Technical University of Denmark, Lyngby, Denmark)
Luisa Giuliani (Department of Civil Engineering, Technical University of Denmark, Lyngby, Denmark)

Journal of Structural Fire Engineering

ISSN: 2040-2317

Article publication date: 30 August 2022

Issue publication date: 16 May 2023

145

Abstract

Purpose

The purpose of this study is to contribute toward providing the main aspects of numerical modeling the fire behavior of steel structures with finite elements (FEs). The application of the method is presented for a characteristic case study comprising the series of large-scale fire door tests performed at the Danish Institute of Fire and Security Technology.

Design/methodology/approach

Following a general overview of current practices in structural fire engineering, the FE method is used to simulate the large-scale furnace tests on steel doors with thermal insulation exposed to standard fire.

Findings

The FE model is compared with the fire test results, achieving good agreement in terms of developed temperatures and deformations.

Originality/value

The numerical methodology and recommended practices for modeling the fire behavior of steel structures are presented, which can be used in support of performance-based fire design standards.

Keywords

Acknowledgements

This research was partially supported by the Danish Institute of Fire and Security Technology (DBI) and the Innovation Fund of Denmark under Grant Agreement No. 9066-00031B.

Citation

Thanasoulas, I., Lauridsen, D., Husted, B.P. and Giuliani, L. (2023), "The finite element method for evaluating the fire behavior of steel structures", Journal of Structural Fire Engineering, Vol. 14 No. 2, pp. 185-201. https://doi.org/10.1108/JSFE-03-2022-0012

Publisher

:

Emerald Publishing Limited

Copyright © 2022, Emerald Publishing Limited

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