TITLE EMERGENCY CALCULATION OF THE INDUSTRIAL BUILDING STRUCTURE

Main Article Content

Valeriy Telichenko
Vladimir Rimshin
Ekaterina Ketsko

Abstract

Emergency situations calculation for the industrial buildings structures is an important element in ensuring their reliability and safety in conditions that contribute to the emergence of significant social, environmental and economic consequences. This calculation is mandatory for objects of a high responsibility level (class KS-3), and can be carried out on a voluntary basis for objects of class KS-2, where a large number of people are expected to be present. The article presents the calculation of the industrial building structures with a high responsibility level and analyzes its results. The calculation was performed in accordance with paragraph 5.1 in SP 56.13330.2011 «Industrial buildings» for resistance to progressive collapse as an emergency situation result. A secondary model was created based on the primary calculation model. An emergency failure case of the middle load-bearing column in the frame along the 18/H axis was selected having analyzed the space-planning and design solutions for this building. It was established that the required beams and the roof slab reinforcement obtained as a calculation result of the secondary model does not exceed that obtained as a primary model calculation result based on the calculations performed results. Also, based on the calculation results of the ozone-sorption block building secondary model (fast filter section) for an emergency situation, it was determined that when such a situation occurs - when one of the columns is turned off - the remaining load-bearing elements take on additional forces without losing strength and stability, that is, resistance to the structure progressive collapse will be ensured.

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Telichenko, V., Rimshin, V., & Ketsko, E. (2025). TITLE EMERGENCY CALCULATION OF THE INDUSTRIAL BUILDING STRUCTURE. International Journal for Computational Civil and Structural Engineering, 21(4), 229-239. https://doi.org/10.22337/2587-9618-2025-21-4-229-239

References

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