Impact of Jet Fires on Steel Structures: Application of Passive Fire Protection Materials

Author:

Gravit Marina1ORCID,Korolchenko Dmitry2,Nedviga Ekaterina1,Portnov Fedor2ORCID,Diachenko Semen3

Affiliation:

1. Higher School of Industrial, Civil and Road Engineering, Peter the Great St. Petersburg Polytechnic University, 195251 Saint-Petersburg, Russia

2. Department of Integrated Safety in Civil Engineering, Moscow State University of Civil Engineering, Yaroslav Shosse, 26, 129337 Moscow, Russia

3. State Institute of Technology (Technical University), Moskovsky Av. 24-26/49, 190013 Saint-Petersburg, Russia

Abstract

Jet fires are the second most common fire scenario after spill fires. This type of fire is characteristic of gas and gas–oil fires occurring on oil platforms and gas production and processing plants. The consequences of such fires are characterized by high material damage; this is associated with extensive networks of technological communications, since there is a high density of technological facilities and installations in the territory where these fires occur. At such facilities, there is a large number of steel structures, which under the action of high temperature quickly lose their strength and deform. To protect steel structures in the oil and gas industry, fire protection is used, which consists of different types: boards in the form of flat plates, plasters, and epoxy paints. This paper compares three types of fire protection materials for steel structures under jet fire: board fireproofing, plaster composition, and epoxy coating. When comparing the efficiency in jet fire, cement boards were found to be the best. However, despite the better fire protection efficiency, their low application is expected due to their massiveness and the high cost of such protection and the difficulty of installation. Nevertheless, the development of fire depends on the place of its origin, the size of the initial fire zone, and the stability and massiveness of the metal elements of the vessel structure or the structure of the boards on which the equipment can be placed. Therefore, it is necessary to take these factors into account when selecting fire protection and to apply it depending on the required fire resistance limits of structures, which should be determined depending on the fire development scenarios.

Funder

National Research Moscow State University

Publisher

MDPI AG

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