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Information and statistical analysis of development of fire vehicles with dry chemical extinguish-ing installations

https://doi.org/10.18322/PVB.2016.25.06.39-47.

Abstract

Mobile dry chemical fire extinguishing equipment (MDСFE) (dry powder fire trucks, combined fire engines, containers and trailers with dry chemical extinguishing devices) are most effective in extin¬guishing fires at hazardous production facilities of various industries. However, they are used very rarely only once in 8-10 years, and in some cases - never for the life cycle. Consequently, the rare use of MDСFE (considering their significant initial cost, about 9 million of Rubles per unit) creates a negative economic impact, and calls for the adoption of organizational and technical measures for its significant reduction. We assessed the prospects of development of MDСFE in three main ways that determine the ap-pearance of any construction:  relevance in the total number of mobile fire extinguishing equipment;  the main characteristics of technological equipment;  the ability to impart properties of multifunctionality. Comparison of the data about Russian and foreign fire technics manufacturers production showed that:  Russian fire-fighting system needs 2.6 % to other types of fire equipment MDСFE;  share of MDСFE models produced in Russia, almost 3 times lower than abroad (7.3 % vs. 18.8 %), that can be explained by their uneconomical production, they are applied very rarely, in compa¬rison with water and foam fire trucks and finaly because of low need for them. It was found that diversity of the stock of foaming agent and dry chemical powder at foreign combined fire engines is an average in 3 times greater than at Russian. The advisability of impart to MDСFE properties of multifunctionality has long been known. There is the idea of a fire engine, adaptable to the specific needs of fire departments. Currently, existing fire extinguishing installations on fire vehicles do not provide the necessary variability of fire extinguishing agents (FEA) filling. In this regard, we developed and tested (with positive results) at the St. Petersburg University Emercom of Russia laboratory model of the universal fire suppression system that meets modern require-ments. Installation configuration allows to mount it on a car and truck chassis, on trailer and in container. The design of vessels and the mechanism of displacement of the installation allow the use of a wide range of FEA and give them to the extinguishing in the required proportions. In addition, it can provide compressed air foam, expanding fire extinguishing capabilities. These results allow us to state (contrary to the skeptics views) that mobile fire extinguishing equip-ment with universal fire-fighting installations are the future of fire fighting. They can be easily reconfigured on the application of any FEA (by number and types) directly at the fire station under the specific tactical tasks depending on the characteristics of protected objects. There are scientific and technological solutions and manufacturing capabilities to create a mobile fire-fighting equipment with the required properties in Russia!

About the Authors

А. Поляков
Санкт-Петербургский университет ГПС МЧС России
Russian Federation


Д. Крылов
Санкт-Петербургский университет ГПС МЧС России
Russian Federation


М. Сытдыков
Санкт-Петербургский университет ГПС МЧС России
Russian Federation


References

1. Верзилин М. М., Плат П. В., Климкин В. И. Типаж пожарных автомобилей на 2011-2015 гг. -М. : МЧС России, 2011.-71 с.

2. Маркова Н. Б., Сытдыков М. Р., Поляков А. С. Обеспечение эксплуатационной надежности пожарных автомобилей порошкового тушения // Вестник Санкт-Петербургского университета ГПС МЧС России. -2014.-№ 1. -С. 38-42.

3. Андросова И. Г., Зуева Н. А., Лупанов С. А. и др. Пожары и пожарная безопасность в 2014 году : стат. сб. / Под общ. ред. А. В. Матюшина. -М. : ВНИИПО, 2015. -124 с.

4. Vaccaro B. In Sharonville, Ohio, preparedness includes a dry chem unit // Fire Rescue. - 2012. - no. 12. URL: http://www.firefighternation.com/article/speccing-and-buying/sharonville-ohio-preparedness-includes-dry-chem-unit (дата обращения: 28.01.2016).

5. Vaccaro B. Speccing a rig for refinery firefighting // Fire Rescue.-2008.-no. 8. URL: http://www.firefighternation.com/article/apparatus-innovations/speccing-rig-refinery-firefighting (дата обращения:29.01.2016).

6. Яковенко Ю. Ф. Пожарные автомобили нового поколения. Современная ситуация и перспективы // Пожарная безопасность : специализированный каталог. - 2015. - С. 82-86. URL: http://www.secuteck.ru/imag/fire-0-2015 (дата обращения: 30.01.2016).

7. Лелеко Д. Российский рынок пожарных автомобилей. Тенденции, новые технологии, перспективы // Пожарная безопасность : специализированный каталог. - 2015. - С. 88-89. URL: http://www.secuteck.ru/imag/fire-0-2015 (дата обращения: 30.01.2016).

8. Бочаров В. Н., Война Ю. Г., Зепалов В. В., Дмитриев А. Ю. Пожарные автомобили: настоящее и будущее // Пожарная безопасность : специализированный каталог.-2015. URL: http://www.secuteck.ru/articles2/firesec/pozharnye-avtomobili-nastoyaschee-i-buduschee (дата обращения: 28.01.2016).

9. Официальный сайт Rosenbauer International AG. Продукция компании. URL: http://www.rosenbauer.com/en/rosenbauer-world/vehicles/industrial-vehicles/dry-powder-fire-trucks.html (дата обращения: 28.01.2016).

10. Ульянов Н. И. Обоснование параметров струеобразующих устройств для подачи огнетушащих порошковых составов : дис. …канд. техн. наук. -М. : АГПС МВД России, 2000. -206 с.

11. Жуйков Д. А. Разработка метода пожаротушения с использованием стволовой установки контейнерной доставки огнетушащих веществ на удаленное расстояние : дис. … канд. техн. наук. -Тольятти : ТГУ, 2007.-185 с.

12. Vaccaro B. At FDIC, Apparatus manufacturers introduce new versions of best-selling models // Fire Rescue.-2014.-No. 6. URL: http://www.firefighternation.com/article/speccing-and-buying/fdicapparatus-manufacturers-introduce-new-versions-best-selling-models (дата обращения: 29.01.2016).

13. Степени боевой готовности соединений и частей ВКС. URL: http://lektsiopedia.org/lek-36643.html (дата обращения: 28.01.2016).

14. Артемьев Н. С., Бондаренко М. В. Тушение разлитого жидкого натрия при пожаре на атомной электростанции // Пожары и чрезвычайные ситуации: предотвращение, ликвидация. - 2012. -№ 1. -C. 36-40.


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For citations:


 ,  ,   Information and statistical analysis of development of fire vehicles with dry chemical extinguish-ing installations. Pozharovzryvobezopasnost/Fire and Explosion Safety. 2016;25(6):39-47. (In Russ.) https://doi.org/10.18322/PVB.2016.25.06.39-47.

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ISSN 0869-7493 (Print)
ISSN 2587-6201 (Online)