Mathematical modeling of thermal fire effect on tanks with oil products

The aim of the work is the development of mathematical models for research that allows to determine the ultimate indicators of the thermal effect on tanks with oil products in a fire. A calculation method was developed to implement the calculation for various scenarios for the development of a fire...

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Main Authors: Semerak Mykhailo, Pozdeev Sergii, Yakovchuk Roman, Nekora Olga, Sviatkevych Oleksandr
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201824700040
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spelling doaj-7725218ddd28434ba46679f6ac7ac25f2021-02-02T03:53:42ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012470004010.1051/matecconf/201824700040matecconf_fese2018_00040Mathematical modeling of thermal fire effect on tanks with oil productsSemerak MykhailoPozdeev SergiiYakovchuk RomanNekora OlgaSviatkevych OleksandrThe aim of the work is the development of mathematical models for research that allows to determine the ultimate indicators of the thermal effect on tanks with oil products in a fire. A calculation method was developed to implement the calculation for various scenarios for the development of a fire in a tank with oil. After the calculations, the results of mathematical modeling of the temperature on the walls of the reservoir in the conditions of a fire in neighboring reservoirs in the form of temperature distributions were obtained. Analysis of the temperature distributions showed that the most dangerous scenario is when the fire occurs according to scheme No. 3 in the case of burning an oil torch at a temperature of 1500 K. In each case, the maximum temperature of heating the tank wall is almost unaffected by the oil, which is confirmed by the curves of the maximum temperature curves heating of the reservoir wall, depending on the time of fire impact on adjacent tanks. The maximum temperature of the reservoir wall was determined at the place of its connection with the oil product, it is preserved.https://doi.org/10.1051/matecconf/201824700040
collection DOAJ
language English
format Article
sources DOAJ
author Semerak Mykhailo
Pozdeev Sergii
Yakovchuk Roman
Nekora Olga
Sviatkevych Oleksandr
spellingShingle Semerak Mykhailo
Pozdeev Sergii
Yakovchuk Roman
Nekora Olga
Sviatkevych Oleksandr
Mathematical modeling of thermal fire effect on tanks with oil products
MATEC Web of Conferences
author_facet Semerak Mykhailo
Pozdeev Sergii
Yakovchuk Roman
Nekora Olga
Sviatkevych Oleksandr
author_sort Semerak Mykhailo
title Mathematical modeling of thermal fire effect on tanks with oil products
title_short Mathematical modeling of thermal fire effect on tanks with oil products
title_full Mathematical modeling of thermal fire effect on tanks with oil products
title_fullStr Mathematical modeling of thermal fire effect on tanks with oil products
title_full_unstemmed Mathematical modeling of thermal fire effect on tanks with oil products
title_sort mathematical modeling of thermal fire effect on tanks with oil products
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The aim of the work is the development of mathematical models for research that allows to determine the ultimate indicators of the thermal effect on tanks with oil products in a fire. A calculation method was developed to implement the calculation for various scenarios for the development of a fire in a tank with oil. After the calculations, the results of mathematical modeling of the temperature on the walls of the reservoir in the conditions of a fire in neighboring reservoirs in the form of temperature distributions were obtained. Analysis of the temperature distributions showed that the most dangerous scenario is when the fire occurs according to scheme No. 3 in the case of burning an oil torch at a temperature of 1500 K. In each case, the maximum temperature of heating the tank wall is almost unaffected by the oil, which is confirmed by the curves of the maximum temperature curves heating of the reservoir wall, depending on the time of fire impact on adjacent tanks. The maximum temperature of the reservoir wall was determined at the place of its connection with the oil product, it is preserved.
url https://doi.org/10.1051/matecconf/201824700040
work_keys_str_mv AT semerakmykhailo mathematicalmodelingofthermalfireeffectontankswithoilproducts
AT pozdeevsergii mathematicalmodelingofthermalfireeffectontankswithoilproducts
AT yakovchukroman mathematicalmodelingofthermalfireeffectontankswithoilproducts
AT nekoraolga mathematicalmodelingofthermalfireeffectontankswithoilproducts
AT sviatkevycholeksandr mathematicalmodelingofthermalfireeffectontankswithoilproducts
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