Modelling and numerical simulation of fire in a coffee storage hall
An approach for modelling of fire in halls at solid materials burning, based on gas phase combustion models in ANSYS/CFX, is proposed. The models are suitable for quick prediction of the flue gases distribution and thermal loads on the building envelopes at a design stage. They was applied for numer...
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EDP Sciences
2021
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oai:doaj.org-article:b76aaaecea75443e96285d819a1f7d862021-12-02T17:12:13ZModelling and numerical simulation of fire in a coffee storage hall2267-124210.1051/e3sconf/202132701007https://doaj.org/article/b76aaaecea75443e96285d819a1f7d862021-01-01T00:00:00Zhttps://www.e3s-conferences.org/articles/e3sconf/pdf/2021/103/e3sconf_pepm2021_01007.pdfhttps://doaj.org/toc/2267-1242An approach for modelling of fire in halls at solid materials burning, based on gas phase combustion models in ANSYS/CFX, is proposed. The models are suitable for quick prediction of the flue gases distribution and thermal loads on the building envelopes at a design stage. They was applied for numerical simulation of such processes in a coffee storage hall at different fire positions and forced anti-smoke ventilation. The thermal, fluid flow and concentration field were obtained at the modelled scenarios. Maximal thermal loads on the building envelopes are established at the case of fire near their non-streamlined parts.Krumov KalinPenkova NinaMladenov BoianStoyanov YordanEDP SciencesarticleEnvironmental sciencesGE1-350ENFRE3S Web of Conferences, Vol 327, p 01007 (2021) |
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Environmental sciences GE1-350 |
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Environmental sciences GE1-350 Krumov Kalin Penkova Nina Mladenov Boian Stoyanov Yordan Modelling and numerical simulation of fire in a coffee storage hall |
description |
An approach for modelling of fire in halls at solid materials burning, based on gas phase combustion models in ANSYS/CFX, is proposed. The models are suitable for quick prediction of the flue gases distribution and thermal loads on the building envelopes at a design stage. They was applied for numerical simulation of such processes in a coffee storage hall at different fire positions and forced anti-smoke ventilation. The thermal, fluid flow and concentration field were obtained at the modelled scenarios. Maximal thermal loads on the building envelopes are established at the case of fire near their non-streamlined parts. |
format |
article |
author |
Krumov Kalin Penkova Nina Mladenov Boian Stoyanov Yordan |
author_facet |
Krumov Kalin Penkova Nina Mladenov Boian Stoyanov Yordan |
author_sort |
Krumov Kalin |
title |
Modelling and numerical simulation of fire in a coffee storage hall |
title_short |
Modelling and numerical simulation of fire in a coffee storage hall |
title_full |
Modelling and numerical simulation of fire in a coffee storage hall |
title_fullStr |
Modelling and numerical simulation of fire in a coffee storage hall |
title_full_unstemmed |
Modelling and numerical simulation of fire in a coffee storage hall |
title_sort |
modelling and numerical simulation of fire in a coffee storage hall |
publisher |
EDP Sciences |
publishDate |
2021 |
url |
https://doaj.org/article/b76aaaecea75443e96285d819a1f7d86 |
work_keys_str_mv |
AT krumovkalin modellingandnumericalsimulationoffireinacoffeestoragehall AT penkovanina modellingandnumericalsimulationoffireinacoffeestoragehall AT mladenovboian modellingandnumericalsimulationoffireinacoffeestoragehall AT stoyanovyordan modellingandnumericalsimulationoffireinacoffeestoragehall |
_version_ |
1718381458306891776 |