Flow Structures of Submerged Gas Jet in Liquid Currents

The flow structure of the submerged gas jet in liquid currents is important to engineering applications. In the present study, the development of a submerged gas jet subjected to liquid current is experimentally investigated to evaluate the effects of the current on the underwater gas jet evolution....

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Main Authors: Dong Ping, Cheng Dong, Jing Huixiang, Li Guanghua, Lu Bingju, Wang Ximeng
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/75/e3sconf_edep2021_03011.pdf
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spelling doaj-382013d65d95492db8cb9f5babc832ae2021-08-09T08:02:22ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012990301110.1051/e3sconf/202129903011e3sconf_edep2021_03011Flow Structures of Submerged Gas Jet in Liquid CurrentsDong PingCheng DongJing HuixiangLi GuanghuaLu BingjuWang XimengThe flow structure of the submerged gas jet in liquid currents is important to engineering applications. In the present study, the development of a submerged gas jet subjected to liquid current is experimentally investigated to evaluate the effects of the current on the underwater gas jet evolution. A full-scale experimental setup is designed for submerged gas jet release and dispersion in the liquid currents with different velocities. The flow structures of the gas jet are captured by shadow photography combined with a high speed video camera. The experimental images are processed to extract the parameters and perform Proper Orthogonal Decomposition (POD) analysis to reveal the characteristics of different modes standing for different flow structures. It turns out that the flow structures of the gas jets submerged in liquid currents with different velocities are affected by the liquid currents and gas jet pulsation, and the analysis will provide credible assessment and opportunity to take prompt response to control potential accidents caused by the submerged gas jet release in liquid current.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/75/e3sconf_edep2021_03011.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Dong Ping
Cheng Dong
Jing Huixiang
Li Guanghua
Lu Bingju
Wang Ximeng
spellingShingle Dong Ping
Cheng Dong
Jing Huixiang
Li Guanghua
Lu Bingju
Wang Ximeng
Flow Structures of Submerged Gas Jet in Liquid Currents
E3S Web of Conferences
author_facet Dong Ping
Cheng Dong
Jing Huixiang
Li Guanghua
Lu Bingju
Wang Ximeng
author_sort Dong Ping
title Flow Structures of Submerged Gas Jet in Liquid Currents
title_short Flow Structures of Submerged Gas Jet in Liquid Currents
title_full Flow Structures of Submerged Gas Jet in Liquid Currents
title_fullStr Flow Structures of Submerged Gas Jet in Liquid Currents
title_full_unstemmed Flow Structures of Submerged Gas Jet in Liquid Currents
title_sort flow structures of submerged gas jet in liquid currents
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description The flow structure of the submerged gas jet in liquid currents is important to engineering applications. In the present study, the development of a submerged gas jet subjected to liquid current is experimentally investigated to evaluate the effects of the current on the underwater gas jet evolution. A full-scale experimental setup is designed for submerged gas jet release and dispersion in the liquid currents with different velocities. The flow structures of the gas jet are captured by shadow photography combined with a high speed video camera. The experimental images are processed to extract the parameters and perform Proper Orthogonal Decomposition (POD) analysis to reveal the characteristics of different modes standing for different flow structures. It turns out that the flow structures of the gas jets submerged in liquid currents with different velocities are affected by the liquid currents and gas jet pulsation, and the analysis will provide credible assessment and opportunity to take prompt response to control potential accidents caused by the submerged gas jet release in liquid current.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/75/e3sconf_edep2021_03011.pdf
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AT chengdong flowstructuresofsubmergedgasjetinliquidcurrents
AT jinghuixiang flowstructuresofsubmergedgasjetinliquidcurrents
AT liguanghua flowstructuresofsubmergedgasjetinliquidcurrents
AT lubingju flowstructuresofsubmergedgasjetinliquidcurrents
AT wangximeng flowstructuresofsubmergedgasjetinliquidcurrents
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