Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power

Operation of energy facilities requires compliance with all safety standards, and especially fire safety. Emergency situations that arise when operated the power equipment damage not only the objects of the technosphere but also the environment. In recent years, can be noted a trend of quite intensi...

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Main Author: Dmitrienko Margarita
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20153701018
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spelling doaj-34205ae3aa344a57aff87731026c6fef2021-02-02T05:30:00ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01370101810.1051/matecconf/20153701018matecconf_sg2015_01018Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of PowerDmitrienko Margarita0Nationsl Research Tomsk Polytechnic UniversityOperation of energy facilities requires compliance with all safety standards, and especially fire safety. Emergency situations that arise when operated the power equipment damage not only the objects of the technosphere but also the environment. In recent years, can be noted a trend of quite intensive development of technological bases of technology water mist fire extinguishing. Using the methods of optical panoramic imaging PIV, IPI and the method of high-speed video recording were performed the experimental studies of the characteristics of evaporation of large single water droplets as they pass through the flames of oil and oil products with varying parameters of the processes (the initial size of 2–6 mm, the rate of 2–4 m/s and the temperature of water drops 290–300 K, the temperature of the combustion products 185–2073 K). Was established decisive influence droplet size, velocities at which droplets enter the gaseous medium, the initial water temperature on heating rate and evaporation of droplets in a stream of high-temperature combustion products.http://dx.doi.org/10.1051/matecconf/20153701018
collection DOAJ
language English
format Article
sources DOAJ
author Dmitrienko Margarita
spellingShingle Dmitrienko Margarita
Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power
MATEC Web of Conferences
author_facet Dmitrienko Margarita
author_sort Dmitrienko Margarita
title Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power
title_short Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power
title_full Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power
title_fullStr Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power
title_full_unstemmed Method for Increasing the Efficiency of Automatic Fire Extinguish System at Objects Of Power
title_sort method for increasing the efficiency of automatic fire extinguish system at objects of power
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2015-01-01
description Operation of energy facilities requires compliance with all safety standards, and especially fire safety. Emergency situations that arise when operated the power equipment damage not only the objects of the technosphere but also the environment. In recent years, can be noted a trend of quite intensive development of technological bases of technology water mist fire extinguishing. Using the methods of optical panoramic imaging PIV, IPI and the method of high-speed video recording were performed the experimental studies of the characteristics of evaporation of large single water droplets as they pass through the flames of oil and oil products with varying parameters of the processes (the initial size of 2–6 mm, the rate of 2–4 m/s and the temperature of water drops 290–300 K, the temperature of the combustion products 185–2073 K). Was established decisive influence droplet size, velocities at which droplets enter the gaseous medium, the initial water temperature on heating rate and evaporation of droplets in a stream of high-temperature combustion products.
url http://dx.doi.org/10.1051/matecconf/20153701018
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