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...

Full description

Bibliographic Details
Main Authors: Pană Iuliana Florina, Alil Luminiţa Cristina, Ilie Florin
Format: Article
Language:English
Published: Sciendo 2015-12-01
Series:Buletinul Ştiinţific al Academiei Trupelor de Uscat
Subjects:
Online Access:https://doi.org/10.1515/bsaft-2015-0008
id doaj-ec26d1b5e3ee40c9b0591c1c2300a39f
record_format Article
spelling 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
_version_ 1717785345372717056