OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems

Introduction: In storage vessels filled with cryogenic liquids thermal destratification can be effectively done by the continuous supply of bubble movements. Therefore, the pressure builds up subsequent blasting of such containers can be avoided and cryogenic storage vessels can be used safely. The...

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Main Authors: Sarath Raj, Bibin K.S., Reby Roy K.E.
Format: Article
Language:English
Published: Occupational Health and Safety Society of Nepal 2024-10-01
Series:International Journal of Occupational Safety and Health
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Online Access:https://www.nepjol.info/index.php/IJOSH/article/view/57612
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author Sarath Raj
Bibin K.S.
Reby Roy K.E.
author_facet Sarath Raj
Bibin K.S.
Reby Roy K.E.
author_sort Sarath Raj
collection DOAJ
description Introduction: In storage vessels filled with cryogenic liquids thermal destratification can be effectively done by the continuous supply of bubble movements. Therefore, the pressure builds up subsequent blasting of such containers can be avoided and cryogenic storage vessels can be used safely. The Volume of Fluid (VOF) approach is utilized in the current computational analysis to examine the safety precautions, dynamics of bubble creation, and subsequent collapse of the free liquid surface in both vertically and horizontally aligned rectangular containers. Methods: In the present work, using the Volume of Fluid (VOF) method, numerically investigated the sloshing behavior within a rectangular container with a 15% free air space with double gas inlets. Results: The impact of inlet gas velocity on sloshing rate due to bubbling is investigated numerically. Also, comparative studies are carried out to investigate the variations of bubble diameter, detachment time, and bubble detachment frequencies considering water-air and LOX-He systems. The mixing behaviors in LOX due to helium bubble formation under different inlet gas velocities were also numerically investigated. The numerical results show that the average deformation index increased by 23.83% when the water-air system was replaced with the LOX-He system. Hence, it can be understood that for the storage vessels filled with cryogenic liquids more safety precautions have to be considered to avoid thermal stratification. The safety precautions include increasing the gas flow rate and including more number gas flow inlets. Conclusion: The present analysis concludes that under a given condition the free liquid surface deformation is more for the case where storage vessels filled with LOX-He. Hence, it can be understood that for the storage vessels filled with cryogenic liquids more safety precautions have to be considered to avoid thermal stratification. The safety precautions include increasing the gas flow rate and including more number gas flow inlets.
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spelling doaj-art-a3b64eb41209484c96a084747dfd7d3c2024-11-22T13:18:08ZengOccupational Health and Safety Society of NepalInternational Journal of Occupational Safety and Health2738-97072091-08782024-10-0114410.3126/ijosh.v14i4.57612OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage SystemsSarath Raj0https://orcid.org/0000-0002-9782-9653Bibin K.S.1https://orcid.org/0000-0002-9745-7992Reby Roy K.E.2https://orcid.org/0000-0002-7259-6101APJ Abdul Kalam Technological University, Kerala, India.Amrita Vishwa Vidyapeetham, Amritapuri/ Mangalam College of Engineering, Kerala, India.T.K.M College of Engineering, Kollam-691005, Kerala, India Introduction: In storage vessels filled with cryogenic liquids thermal destratification can be effectively done by the continuous supply of bubble movements. Therefore, the pressure builds up subsequent blasting of such containers can be avoided and cryogenic storage vessels can be used safely. The Volume of Fluid (VOF) approach is utilized in the current computational analysis to examine the safety precautions, dynamics of bubble creation, and subsequent collapse of the free liquid surface in both vertically and horizontally aligned rectangular containers. Methods: In the present work, using the Volume of Fluid (VOF) method, numerically investigated the sloshing behavior within a rectangular container with a 15% free air space with double gas inlets. Results: The impact of inlet gas velocity on sloshing rate due to bubbling is investigated numerically. Also, comparative studies are carried out to investigate the variations of bubble diameter, detachment time, and bubble detachment frequencies considering water-air and LOX-He systems. The mixing behaviors in LOX due to helium bubble formation under different inlet gas velocities were also numerically investigated. The numerical results show that the average deformation index increased by 23.83% when the water-air system was replaced with the LOX-He system. Hence, it can be understood that for the storage vessels filled with cryogenic liquids more safety precautions have to be considered to avoid thermal stratification. The safety precautions include increasing the gas flow rate and including more number gas flow inlets. Conclusion: The present analysis concludes that under a given condition the free liquid surface deformation is more for the case where storage vessels filled with LOX-He. Hence, it can be understood that for the storage vessels filled with cryogenic liquids more safety precautions have to be considered to avoid thermal stratification. The safety precautions include increasing the gas flow rate and including more number gas flow inlets. https://www.nepjol.info/index.php/IJOSH/article/view/57612Deformation indexLOX-HeSafetyStorage vesselsThermal destratification
spellingShingle Sarath Raj
Bibin K.S.
Reby Roy K.E.
OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems
International Journal of Occupational Safety and Health
Deformation index
LOX-He
Safety
Storage vessels
Thermal destratification
title OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems
title_full OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems
title_fullStr OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems
title_full_unstemmed OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems
title_short OpenFOAM Analysis on the Comparison of Safety Requirements Provided for Water-Air and LOX-He Storage Systems
title_sort openfoam analysis on the comparison of safety requirements provided for water air and lox he storage systems
topic Deformation index
LOX-He
Safety
Storage vessels
Thermal destratification
url https://www.nepjol.info/index.php/IJOSH/article/view/57612
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