Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus
Storage and transportation is one the complicated problems in the direction of the Hydrogen industrial application. The recent paper examines the use of relatively light and low cost two types of composed materials to transport the Hydrogen. The investigation is carried out numerically by finite ele...
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Asian Network for Scientific Information
2010
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my.utp.eprints.42232017-01-19T08:23:59Z Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus Badri, T. M. Al-Kayiem, Hussain H. TJ Mechanical engineering and machinery QC Physics Storage and transportation is one the complicated problems in the direction of the Hydrogen industrial application. The recent paper examines the use of relatively light and low cost two types of composed materials to transport the Hydrogen. The investigation is carried out numerically by finite element technique. The vessel is modeled and simulated using ANSYS software. The selected composites are Glass/Epoxy and Graphite/Epoxy. The initial temperature of cryogenic is -70oC. The analysis is conducted under the assumption of external temperature variation from 22oC to 400oC. It is found, for both selected composites, that the materials are capable to maintain the storage conditions safely and stable up to 360oC external surface temperature. Keywords: FGM, Cryogenic hydrogen storage, composite pressure vessel, liquefied hydrogen Asian Network for Scientific Information 2010-06-15 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/4223/1/index.html%3Fdoi%3Djas.2011.1756.1762 http://scialert.net Badri, T. M. and Al-Kayiem, Hussain H. (2010) Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus. [Citation Index Journal] http://eprints.utp.edu.my/4223/ |
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TJ Mechanical engineering and machinery QC Physics Badri, T. M. Al-Kayiem, Hussain H. Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus |
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Storage and transportation is one the complicated problems in the direction of the Hydrogen industrial application. The recent paper examines the use of relatively light and low cost two types of composed materials to transport the Hydrogen. The investigation is carried out numerically by finite element technique. The vessel is modeled and simulated using ANSYS software. The selected composites are Glass/Epoxy and Graphite/Epoxy. The initial temperature of cryogenic is -70oC. The analysis is conducted under the assumption of external temperature variation from 22oC to 400oC. It is found, for both selected composites, that the materials are capable to maintain the storage conditions safely and stable up to 360oC external surface temperature.
Keywords: FGM, Cryogenic hydrogen storage, composite pressure vessel, liquefied hydrogen
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format |
Citation Index Journal |
author |
Badri, T. M. Al-Kayiem, Hussain H. |
author_facet |
Badri, T. M. Al-Kayiem, Hussain H. |
author_sort |
Badri, T. M. |
title |
Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus |
title_short |
Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus |
title_full |
Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus |
title_fullStr |
Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus |
title_full_unstemmed |
Numerical Analysis of Thermal and Elastic Stresses in Thick Pressure Vessels for Cryogenic Hydrogen Storage Apparatus |
title_sort |
numerical analysis of thermal and elastic stresses in thick pressure vessels for cryogenic hydrogen storage apparatus |
publisher |
Asian Network for Scientific Information |
publishDate |
2010 |
url |
http://eprints.utp.edu.my/4223/1/index.html%3Fdoi%3Djas.2011.1756.1762 http://scialert.net http://eprints.utp.edu.my/4223/ |
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1738655327256051712 |
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13.211869 |