DOI: 10.34031/2071-7318-2026-11-8-28-37 ISSN: 2071-7318

DEVELOPMENT OF SIMULATION MODELS FOR ASSESSING INDIVIDUAL FIRE RISK FOR LARGE WAREHOUSE COMPLEXES

A. Glukhanov, A. Semeykin

The purpose of the study is to assess the compliance of a large warehouse complex with fire safety requirements and to analyze the level of fire hazard. The determination of fire risk is based on the calculation of values that reflect the fire hazard for the object under consideration. The calculated data is compared with the limit values specified in regulatory documents. The calculated fire risk parameters provide a quantitative assessment of the likelihood of a fire occurring at the facility and its potential consequences for the safety of people and property. Method. The article presents a method for calculating quantitative indicators that characterize the level of fire hazard for large warehouse buildings. The developed method is intended to provide an opportunity for a reliable assessment of the potential threat of fire occurrence and development within a large warehouse complex. The parameters that affect the formation of fire hazards, such as architectural and planning features, fire load, fire safety measures, and other factors, are analyzed in detail. Special attention is given to the individual characteristics of warehouse facilities, including the wide range of stored goods, the frequency of cargo operations, and the presence of areas with increased fire vulnerability. Conclusion. The results of the fire risk analysis can be used to create and implement effective measures to prevent fires, ensure the safety of personnel, and protect the material resources of warehouse facilities. The proposed approach makes it possible to improve the costs of fire safety at the facility by choosing the most appropriate and well-reasoned solutions. The authors have proposed additional fire safety measures to ensure fire safety at the warehouse complex.

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