Numerical simulation of the relationship between underwater jets oscillation and shock wave

In order to study the relationship between an underwater shock wave and jet thrust oscillation, a simulation model of underwater jet is established. As per a numerical calculation based on the SST (Shear Stress Transport), and VOF (Volume of Fluid) models, the flow speed of jet gas has been changed...

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Main Authors: Yunlong Tang, Shipeng Li
Format: Article
Language:English
Published: JVE International 2017-12-01
Series:Journal of Vibroengineering
Subjects:
Online Access:https://www.jvejournals.com/article/17657
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spelling doaj-b0bbe45db2a54e43802821c8e7edeb7f2020-11-25T00:45:16ZengJVE InternationalJournal of Vibroengineering1392-87162538-84602017-12-011986363637310.21595/jve.2017.1765717657Numerical simulation of the relationship between underwater jets oscillation and shock waveYunlong Tang0Shipeng Li1Beijing Institute of Technology, Beijing, P. R. ChinaBeijing Institute of Technology, Beijing, P. R. ChinaIn order to study the relationship between an underwater shock wave and jet thrust oscillation, a simulation model of underwater jet is established. As per a numerical calculation based on the SST (Shear Stress Transport), and VOF (Volume of Fluid) models, the flow speed of jet gas has been changed with the pressure ratio. When the jet speed becomes supersonic, its corresponding shock structure will occur. When the pressure ratio is small, the shock wave structure in the nozzle is normal, and in case of an increase of the jet speed, the jet is moving from the nozzle inside to the outside. When the pressure ratio reaches a certain number, the shock is out of nozzle, and the nozzle is operating in an over-expansion state, the thrust oscillation amplitude is high. When the pressure ratio is large, and the nozzle is operating in the under-expanded state, then the structure of shock wave is very complex, jet back-attack no longer appears, and the thrust amplitude is rather smaller than the over-expanded one. Two kinds of situations are compared. And the comparison revealed that the highly under-expanded state is more conducive to the stability of the underwater vehicle, which can provide a reference for the corresponding design.https://www.jvejournals.com/article/17657shock wavethrust oscillationunderwaterpressure ratio
collection DOAJ
language English
format Article
sources DOAJ
author Yunlong Tang
Shipeng Li
spellingShingle Yunlong Tang
Shipeng Li
Numerical simulation of the relationship between underwater jets oscillation and shock wave
Journal of Vibroengineering
shock wave
thrust oscillation
underwater
pressure ratio
author_facet Yunlong Tang
Shipeng Li
author_sort Yunlong Tang
title Numerical simulation of the relationship between underwater jets oscillation and shock wave
title_short Numerical simulation of the relationship between underwater jets oscillation and shock wave
title_full Numerical simulation of the relationship between underwater jets oscillation and shock wave
title_fullStr Numerical simulation of the relationship between underwater jets oscillation and shock wave
title_full_unstemmed Numerical simulation of the relationship between underwater jets oscillation and shock wave
title_sort numerical simulation of the relationship between underwater jets oscillation and shock wave
publisher JVE International
series Journal of Vibroengineering
issn 1392-8716
2538-8460
publishDate 2017-12-01
description In order to study the relationship between an underwater shock wave and jet thrust oscillation, a simulation model of underwater jet is established. As per a numerical calculation based on the SST (Shear Stress Transport), and VOF (Volume of Fluid) models, the flow speed of jet gas has been changed with the pressure ratio. When the jet speed becomes supersonic, its corresponding shock structure will occur. When the pressure ratio is small, the shock wave structure in the nozzle is normal, and in case of an increase of the jet speed, the jet is moving from the nozzle inside to the outside. When the pressure ratio reaches a certain number, the shock is out of nozzle, and the nozzle is operating in an over-expansion state, the thrust oscillation amplitude is high. When the pressure ratio is large, and the nozzle is operating in the under-expanded state, then the structure of shock wave is very complex, jet back-attack no longer appears, and the thrust amplitude is rather smaller than the over-expanded one. Two kinds of situations are compared. And the comparison revealed that the highly under-expanded state is more conducive to the stability of the underwater vehicle, which can provide a reference for the corresponding design.
topic shock wave
thrust oscillation
underwater
pressure ratio
url https://www.jvejournals.com/article/17657
work_keys_str_mv AT yunlongtang numericalsimulationoftherelationshipbetweenunderwaterjetsoscillationandshockwave
AT shipengli numericalsimulationoftherelationshipbetweenunderwaterjetsoscillationandshockwave
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