Mathematical simulation of transient combustion of melted energetic materials

The computer code is elaborated for numerical simulation of transient combustion of energetic materials (EM) subjected to the action of time-dependent heat flux and under transient pressure conditions. It allows studying combustion response upon interrupted irradiation (transient pressure) and unde...

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Main Author: Vladimir E. Zarko
Format: Article
Language:English
Published: al-Farabi Kazakh National University 2019-09-01
Series:Chemical Bulletin of Kazakh National University
Subjects:
Online Access:https://bulletin.chemistry.kz/index.php/kaznu/article/view/1079
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spelling doaj-7bae73ff84cd4333a8ae8786596cdc422020-11-25T03:51:56Zengal-Farabi Kazakh National UniversityChemical Bulletin of Kazakh National University1563-03312312-75542019-09-01310.15328/cb1079Mathematical simulation of transient combustion of melted energetic materialsVladimir E. Zarko0Voevodsky Institute of Chemical Kinetics and Combustion, Novosibirsk, Russia The computer code is elaborated for numerical simulation of transient combustion of energetic materials (EM) subjected to the action of time-dependent heat flux and under transient pressure conditions. It allows studying combustion response upon interrupted irradiation (transient pressure) and under action of periodically varied heat flux (pressure) in order to determine stability of ignition transients and parameters of transient combustion. The originally solid EM melts and then evaporates at the surface. It is assumed that chemical transformations occur both in the condensed and gas phases. At the burning surface, the phase transition condition in the form of Clapeyron-Clausius law for equilibrium evaporation is formulated that corresponds to the case of combustion of sublimated or melted EM. The paper contains description of transient combustion problem formulation and several examples of transient combustion modeling. At present time a precise prediction of transient burning rate characteristics is impossible because of the lack of information about magnitude of EM parameters at high temperatures. However, the simulation results bring valuable qualitative information about burning rate behavior at variations in time of external conditions – radiant flux and pressure. https://bulletin.chemistry.kz/index.php/kaznu/article/view/1079combustion simulationmeltingenergetic materialsradiant fluxchemical transformations
collection DOAJ
language English
format Article
sources DOAJ
author Vladimir E. Zarko
spellingShingle Vladimir E. Zarko
Mathematical simulation of transient combustion of melted energetic materials
Chemical Bulletin of Kazakh National University
combustion simulation
melting
energetic materials
radiant flux
chemical transformations
author_facet Vladimir E. Zarko
author_sort Vladimir E. Zarko
title Mathematical simulation of transient combustion of melted energetic materials
title_short Mathematical simulation of transient combustion of melted energetic materials
title_full Mathematical simulation of transient combustion of melted energetic materials
title_fullStr Mathematical simulation of transient combustion of melted energetic materials
title_full_unstemmed Mathematical simulation of transient combustion of melted energetic materials
title_sort mathematical simulation of transient combustion of melted energetic materials
publisher al-Farabi Kazakh National University
series Chemical Bulletin of Kazakh National University
issn 1563-0331
2312-7554
publishDate 2019-09-01
description The computer code is elaborated for numerical simulation of transient combustion of energetic materials (EM) subjected to the action of time-dependent heat flux and under transient pressure conditions. It allows studying combustion response upon interrupted irradiation (transient pressure) and under action of periodically varied heat flux (pressure) in order to determine stability of ignition transients and parameters of transient combustion. The originally solid EM melts and then evaporates at the surface. It is assumed that chemical transformations occur both in the condensed and gas phases. At the burning surface, the phase transition condition in the form of Clapeyron-Clausius law for equilibrium evaporation is formulated that corresponds to the case of combustion of sublimated or melted EM. The paper contains description of transient combustion problem formulation and several examples of transient combustion modeling. At present time a precise prediction of transient burning rate characteristics is impossible because of the lack of information about magnitude of EM parameters at high temperatures. However, the simulation results bring valuable qualitative information about burning rate behavior at variations in time of external conditions – radiant flux and pressure.
topic combustion simulation
melting
energetic materials
radiant flux
chemical transformations
url https://bulletin.chemistry.kz/index.php/kaznu/article/view/1079
work_keys_str_mv AT vladimirezarko mathematicalsimulationoftransientcombustionofmeltedenergeticmaterials
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