An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries

Supercritical CO2 pipelines usually are used to link the CO2 capture system to the geological storage. There are severe hazards once the asphyxiating gas leaks from the long-distance pipeline. The uncertainty of near-field jet characteristics results in imprecise consequences assessment of accidenta...

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Main Authors: Lin Teng, Jinbao Bai, Yuxing Li, Cailin Wang
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-10-01
Series:Frontiers in Energy Research
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenrg.2021.697031/full
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author Lin Teng
Lin Teng
Jinbao Bai
Yuxing Li
Cailin Wang
author_facet Lin Teng
Lin Teng
Jinbao Bai
Yuxing Li
Cailin Wang
author_sort Lin Teng
collection DOAJ
description Supercritical CO2 pipelines usually are used to link the CO2 capture system to the geological storage. There are severe hazards once the asphyxiating gas leaks from the long-distance pipeline. The uncertainty of near-field jet characteristics results in imprecise consequences assessment of accidental release of supercritical CO2. To improve the prediction of consequences of accidental release accuracy, the near-field mechanisms of flashing-spray jet was investigated. In this work, an experimental setup with multiple measurement instruments was developed to impose controllable CO2 release from a high-pressure vessel. The flashing-spray jet structures of supercritical CO2 from circular and rectangular orifices were recorded by a high-speed camera. Results indicate that the near-field structures of supercritical CO2 jet from circular and rectangular orifices are totally different, which causes the different dispersion consequences. The jet angle and shock waves were analyzed quantitatively. Lastly, the models of flashing-spray based on the two different phenomena from rectangular and circular orifices were discussed. The combination of macroscopic and microscopic data in the jet can help to understand the complex physics and improve discharge and dispersion model. This work provides a fundamental data to consequences assessment of accidental release of supercritical CO2.
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spelling doaj.art-09d3f5264ae14ab0876d3ca34e52f1f42022-12-21T19:13:14ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2021-10-01910.3389/fenrg.2021.697031697031An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice GeometriesLin Teng0Lin Teng1Jinbao Bai2Yuxing Li3Cailin Wang4College of Chemical Engineering, Fuzhou University, Fuzhou, ChinaChongqing University Industrial Technology Research Institute, Chongqing University, Chongqing, ChinaCollege of Chemical Engineering, Fuzhou University, Fuzhou, ChinaShandong Provincial Key Laboratory of Oil and Gas Storage and Transportation Security, China University of Petroleum (East China), Qingdao, ChinaShandong Provincial Key Laboratory of Oil and Gas Storage and Transportation Security, China University of Petroleum (East China), Qingdao, ChinaSupercritical CO2 pipelines usually are used to link the CO2 capture system to the geological storage. There are severe hazards once the asphyxiating gas leaks from the long-distance pipeline. The uncertainty of near-field jet characteristics results in imprecise consequences assessment of accidental release of supercritical CO2. To improve the prediction of consequences of accidental release accuracy, the near-field mechanisms of flashing-spray jet was investigated. In this work, an experimental setup with multiple measurement instruments was developed to impose controllable CO2 release from a high-pressure vessel. The flashing-spray jet structures of supercritical CO2 from circular and rectangular orifices were recorded by a high-speed camera. Results indicate that the near-field structures of supercritical CO2 jet from circular and rectangular orifices are totally different, which causes the different dispersion consequences. The jet angle and shock waves were analyzed quantitatively. Lastly, the models of flashing-spray based on the two different phenomena from rectangular and circular orifices were discussed. The combination of macroscopic and microscopic data in the jet can help to understand the complex physics and improve discharge and dispersion model. This work provides a fundamental data to consequences assessment of accidental release of supercritical CO2.https://www.frontiersin.org/articles/10.3389/fenrg.2021.697031/fullsupercritical CO2releasenear-filed structureflashing-spray modelMach disc
spellingShingle Lin Teng
Lin Teng
Jinbao Bai
Yuxing Li
Cailin Wang
An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries
Frontiers in Energy Research
supercritical CO2
release
near-filed structure
flashing-spray model
Mach disc
title An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries
title_full An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries
title_fullStr An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries
title_full_unstemmed An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries
title_short An Experiment on Flashing-Spray Jet Characteristics of Supercritical CO2 from Various Orifice Geometries
title_sort experiment on flashing spray jet characteristics of supercritical co2 from various orifice geometries
topic supercritical CO2
release
near-filed structure
flashing-spray model
Mach disc
url https://www.frontiersin.org/articles/10.3389/fenrg.2021.697031/full
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