Introduction. To date, fires in high-rise buildings are one of the significant problems faced by fire protection units. Unique objects require a special approach in terms of fire safety and fire extinguishing. The most important task is to ensure the supply of extinguishing agents to the height using modern fire-fighting equipment and installations.Materials and methods. In September 2021, to conduct experimental scientific and tactical exercises on the roof of the Neva Towers tower, a program and methodology for supplying fire extinguishing agents in various ways to the height were developed. The following methods of feeding to height were considered: deployment using the equipment of a container for high-altitude firefighting, feeding from an installation with compression foam technology, feeding using a waterjet cutting unit “Cobra”.Theoretical bases. A theoretical assessment of the possibility of supplying extinguishing agents to a height with the help of new fire-rescue equipment confirmed the need for experimental scientific and tactical exercises on the roof of the Neva Towers tower.Results and discussions. As a result of the scientific and tactical exercises, the effectiveness of the use of new fire extinguishing systems with compression foam supply, as well as installations with waterjet cutting technology “Cobra” was proved. It was possible to provide a feed to a height of 350 m.Conclusions. To date, with the help of new fire extinguishing technologies, it has been experimentally proven that their use is most effective compared to “traditional” methods of supplying extinguishing agents. In the future, it is necessary to conduct more detailed studies of the hydrodynamic parameters of pumping and bag systems in order to develop recommendations for preliminary planning of the actions of forces and means of fire and rescue units.
PURPOSE. The result of extinguishing fires depends on the efficiency and coherence of work of fire department personnel, engaged in extinguishment. In most cases, the work of firefighters takes place in limited visibility conditions. In this regard, it is necessary to use technical means to increase visibility under such conditions. The article proposes the use of a device developed by the specialists of State Fire Academy of EMERCOM of Russia and presents comparative results of visibility research using various technical means. METHODS. Specialists of State Fire Academy of EMERCOM of Russia conducted comparative experimental research to assess visibility in a closed dark room using individual lighting devices and a developed device. FINDINGS. It is proposed to use the developed device when working under limited visibility conditions, which will increase the efficiency of fire department personnel during fire extinguishment and rescue operations. RESEARCH APPLICATION FIELD. The results obtained and further research are of practical importance in improving the efficiency of fire department personnel in limited visibility conditions. CONCLUSIONS. The analysis based on practice and conducted experimental research showed that along with the use of individual lighting devices, the use of the developed device will improve visibility during fire extinguishment and other works in limited visibility conditions.
PURPOSE. The problem of prompt and efficient fire suppression in high-rise buildings is getting more relevant in view of increase in the number of floors in residential buildings nowadays. The aim of the given work is to conduct an analytical review and identify the main features of extinguishing fires in high-rise buildings with the help of technical means delivering extinguishing agents to the height. METHODS. The authors used methods of mathematical statistics, systems analysis and expert assessments. FINDINGS. The analysis of fires in multi-storey residential buildings in the Russian Federation made it possible to reveal the trend towards increase in fires in such buildings over the past few years. Kitchen and living rooms are still the main source of ignition. And the problem of delivering extinguishing agents to the height remains relevant. Three scenarios of fires for different floors were simulated and schemes for delivering extinguishing agents with the help of mobile means of fire extinguishment were proposed. Fire-fighting equipment and its weight necessary for extinguishing fires were calculated. The probability of the injury rate growth due to increased load on firemen while extinguishing fires at these facilities was brought out. RESEARCH APPLICATION FIELD. The outcomes of the research can be used when studying specifics of fire development in multi-storey residential buildings in order to further improve technical means of fire extinguishment. CONCLUSIONS. Developing and introducing “gentle” means for delivering extinguishing agents in enclosed spaces will allow minimizing damage from excessive water delivery onto fires, and improving ergonomic parameters of fire-fighting equipment will make it possible to speed up laying main and working lines and also to reduce the level of injuries among firefighters due to exhaustion.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
customersupport@researchsolutions.com
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Copyright © 2025 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.