Aspects Regarding Shock Wave Mitigation Through Different Media
The main application of underwater detonation since the Second World War is to destroy military ships. Nowadays, a lot of studies are performed in order to discover a controlled and safe application of shock waves through different media. The paper presents the results of a research on a bubble curt...
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Online Access: | https://doi.org/10.1515/bsaft-2015-0008 |
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doaj-ec26d1b5e3ee40c9b0591c1c2300a39f2021-09-05T20:42:39ZengSciendoBuletinul Ştiinţific al Academiei Trupelor de Uscat1224-51782451-31482015-12-01202495410.1515/bsaft-2015-0008bsaft-2015-0008Aspects Regarding Shock Wave Mitigation Through Different MediaPană Iuliana Florina0Alil Luminiţa Cristina1Ilie Florin2MILITARY TECHNICAL ACADEMY, BUCHAREST, ROMANIAMILITARY TECHNICAL ACADEMY, BUCHAREST, ROMANIA“NICOLAE BĂLCESCU” LAND FORCES ACADEMY, SIBIU, ROMANIAThe main application of underwater detonation since the Second World War is to destroy military ships. Nowadays, a lot of studies are performed in order to discover a controlled and safe application of shock waves through different media. The paper presents the results of a research on a bubble curtain behaviour subjected to shock waves generated by an underwater TNT blast. The main objective was to analyze the mitigation solution of underwater explosion effects by means of gas bubbles. Simulations using ANSYS AUTODYN and explicit dynamics procedures were performed on a 3D model, in order to better understand the physical process of formation and propagation of a shock wave in the biphasic medium which represents the purpose of many researchers. The numerical simulations were performed taking into account the interaction between a shock wave and the bubble curtain considering a random distribution in space and bubble dimensions.https://doi.org/10.1515/bsaft-2015-0008simulationbiphasic mediumshock weaveexplicit dynamics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pană Iuliana Florina Alil Luminiţa Cristina Ilie Florin |
spellingShingle |
Pană Iuliana Florina Alil Luminiţa Cristina Ilie Florin Aspects Regarding Shock Wave Mitigation Through Different Media Buletinul Ştiinţific al Academiei Trupelor de Uscat simulation biphasic medium shock weave explicit dynamics |
author_facet |
Pană Iuliana Florina Alil Luminiţa Cristina Ilie Florin |
author_sort |
Pană Iuliana Florina |
title |
Aspects Regarding Shock Wave Mitigation Through Different Media |
title_short |
Aspects Regarding Shock Wave Mitigation Through Different Media |
title_full |
Aspects Regarding Shock Wave Mitigation Through Different Media |
title_fullStr |
Aspects Regarding Shock Wave Mitigation Through Different Media |
title_full_unstemmed |
Aspects Regarding Shock Wave Mitigation Through Different Media |
title_sort |
aspects regarding shock wave mitigation through different media |
publisher |
Sciendo |
series |
Buletinul Ştiinţific al Academiei Trupelor de Uscat |
issn |
1224-5178 2451-3148 |
publishDate |
2015-12-01 |
description |
The main application of underwater detonation since the Second World War is to destroy military ships. Nowadays, a lot of studies are performed in order to discover a controlled and safe application of shock waves through different media. The paper presents the results of a research on a bubble curtain behaviour subjected to shock waves generated by an underwater TNT blast. The main objective was to analyze the mitigation solution of underwater explosion effects by means of gas bubbles. Simulations using ANSYS AUTODYN and explicit dynamics procedures were performed on a 3D model, in order to better understand the physical process of formation and propagation of a shock wave in the biphasic medium which represents the purpose of many researchers. The numerical simulations were performed taking into account the interaction between a shock wave and the bubble curtain considering a random distribution in space and bubble dimensions. |
topic |
simulation biphasic medium shock weave explicit dynamics |
url |
https://doi.org/10.1515/bsaft-2015-0008 |
work_keys_str_mv |
AT panaiulianaflorina aspectsregardingshockwavemitigationthroughdifferentmedia AT alilluminitacristina aspectsregardingshockwavemitigationthroughdifferentmedia AT ilieflorin aspectsregardingshockwavemitigationthroughdifferentmedia |
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1717785345372717056 |