Numerical analysis of the explosion of gas tanks using computational fluid dynamics

abstract: Buildings are composed of several systems, each with specific designs and regulations to ensure that constructions are safe and viable. Many residential, commercial, and industrial buildings have systems with gas central storage, which must be subjected to strict safety criteria to avoid accidents. In addition to the safety mechanisms provided by manufacturers, designers of these gas central storage must consider other devices to reduce explosion risk and mitigate the damaging blast effects. Explosions are physical-chemical phenomena that are characterized by the sudden expansion of a material and, consequently, energy release. When an accidental explosion occurs, much damage is caused by the shock wave and fragments. In the case of pressure vessels, a mechanical explosion can occur. Studying this explosion is essential to developing a more reliable, safe design for surrounding buildings and its users. This work aims to study the effects of gas tank explosions. In this study, the Autodyn computational tool based on fluid dynamics (CFD) is used. This software allows the modeling of complex explosion scenarios and the evaluation of blast wave parameters. For each numerical model, the overpressure levels outdoors and indoors are evaluated. The results indicated how the wave overpressures are distributed in different scenarios, and from them, it was possible to analyze the damaging levels.

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Main Authors: Moura,Tiago Rodrigues Coelho de, Costa Neto,Murilo Limeira da, Doz,Graciela Nora
Format: Digital revista
Language:English
Published: IBRACON - Instituto Brasileiro do Concreto 2023
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1983-41952023000400207
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spelling oai:scielo:S1983-419520230004002072023-01-10Numerical analysis of the explosion of gas tanks using computational fluid dynamicsMoura,Tiago Rodrigues Coelho deCosta Neto,Murilo Limeira daDoz,Graciela Nora explosion LPG tank shock wave overpressure damage abstract: Buildings are composed of several systems, each with specific designs and regulations to ensure that constructions are safe and viable. Many residential, commercial, and industrial buildings have systems with gas central storage, which must be subjected to strict safety criteria to avoid accidents. In addition to the safety mechanisms provided by manufacturers, designers of these gas central storage must consider other devices to reduce explosion risk and mitigate the damaging blast effects. Explosions are physical-chemical phenomena that are characterized by the sudden expansion of a material and, consequently, energy release. When an accidental explosion occurs, much damage is caused by the shock wave and fragments. In the case of pressure vessels, a mechanical explosion can occur. Studying this explosion is essential to developing a more reliable, safe design for surrounding buildings and its users. This work aims to study the effects of gas tank explosions. In this study, the Autodyn computational tool based on fluid dynamics (CFD) is used. This software allows the modeling of complex explosion scenarios and the evaluation of blast wave parameters. For each numerical model, the overpressure levels outdoors and indoors are evaluated. The results indicated how the wave overpressures are distributed in different scenarios, and from them, it was possible to analyze the damaging levels.info:eu-repo/semantics/openAccessIBRACON - Instituto Brasileiro do ConcretoRevista IBRACON de Estruturas e Materiais v.16 n.4 20232023-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1983-41952023000400207en10.1590/s1983-41952023000400008
institution SCIELO
collection OJS
country Brasil
countrycode BR
component Revista
access En linea
databasecode rev-scielo-br
tag revista
region America del Sur
libraryname SciELO
language English
format Digital
author Moura,Tiago Rodrigues Coelho de
Costa Neto,Murilo Limeira da
Doz,Graciela Nora
spellingShingle Moura,Tiago Rodrigues Coelho de
Costa Neto,Murilo Limeira da
Doz,Graciela Nora
Numerical analysis of the explosion of gas tanks using computational fluid dynamics
author_facet Moura,Tiago Rodrigues Coelho de
Costa Neto,Murilo Limeira da
Doz,Graciela Nora
author_sort Moura,Tiago Rodrigues Coelho de
title Numerical analysis of the explosion of gas tanks using computational fluid dynamics
title_short Numerical analysis of the explosion of gas tanks using computational fluid dynamics
title_full Numerical analysis of the explosion of gas tanks using computational fluid dynamics
title_fullStr Numerical analysis of the explosion of gas tanks using computational fluid dynamics
title_full_unstemmed Numerical analysis of the explosion of gas tanks using computational fluid dynamics
title_sort numerical analysis of the explosion of gas tanks using computational fluid dynamics
description abstract: Buildings are composed of several systems, each with specific designs and regulations to ensure that constructions are safe and viable. Many residential, commercial, and industrial buildings have systems with gas central storage, which must be subjected to strict safety criteria to avoid accidents. In addition to the safety mechanisms provided by manufacturers, designers of these gas central storage must consider other devices to reduce explosion risk and mitigate the damaging blast effects. Explosions are physical-chemical phenomena that are characterized by the sudden expansion of a material and, consequently, energy release. When an accidental explosion occurs, much damage is caused by the shock wave and fragments. In the case of pressure vessels, a mechanical explosion can occur. Studying this explosion is essential to developing a more reliable, safe design for surrounding buildings and its users. This work aims to study the effects of gas tank explosions. In this study, the Autodyn computational tool based on fluid dynamics (CFD) is used. This software allows the modeling of complex explosion scenarios and the evaluation of blast wave parameters. For each numerical model, the overpressure levels outdoors and indoors are evaluated. The results indicated how the wave overpressures are distributed in different scenarios, and from them, it was possible to analyze the damaging levels.
publisher IBRACON - Instituto Brasileiro do Concreto
publishDate 2023
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1983-41952023000400207
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