Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container

This paper describes the axial vibration analysis of a closed ends rigid cylindrical container containing liquid and gas which separated by a thin circular plate at their interface. The liquid depths inside the container were varied and then the mode of vibration and the natural frequencies were ana...

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Main Authors: Zainulabidin, Muhd Hafeez, Gorman, D. G.
Format: Article
Language:English
Published: International Journals of Engineering and Sciences Publisher 2014
Subjects:
Online Access:http://eprints.uthm.edu.my/3966/1/AJ%202017%20%28550%29.pdf
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author Zainulabidin, Muhd Hafeez
Gorman, D. G.
author_facet Zainulabidin, Muhd Hafeez
Gorman, D. G.
author_sort Zainulabidin, Muhd Hafeez
collection UTHM
description This paper describes the axial vibration analysis of a closed ends rigid cylindrical container containing liquid and gas which separated by a thin circular plate at their interface. The liquid depths inside the container were varied and then the mode of vibration and the natural frequencies were analyzed. The natural frequencies obtained experimentally were compared favorably with those of commercial finite element analysis software, ANSYS. The vibration mode of the liquid-structure interaction of the tank system can be visualized from the software post processing animation/plot. The visualized modes are also consistent with the measurement by the respective experimental transducers. It was found that strong coupling predominantly occur between liquid and structure. In weak coupling conditions, the modes are predominantly gas mode
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spelling uthm.eprints-39662021-11-22T08:02:15Z http://eprints.uthm.edu.my/3966/ Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container Zainulabidin, Muhd Hafeez Gorman, D. G. TK1001-1841 Production of electric energy or power. Powerplants. Central stations This paper describes the axial vibration analysis of a closed ends rigid cylindrical container containing liquid and gas which separated by a thin circular plate at their interface. The liquid depths inside the container were varied and then the mode of vibration and the natural frequencies were analyzed. The natural frequencies obtained experimentally were compared favorably with those of commercial finite element analysis software, ANSYS. The vibration mode of the liquid-structure interaction of the tank system can be visualized from the software post processing animation/plot. The visualized modes are also consistent with the measurement by the respective experimental transducers. It was found that strong coupling predominantly occur between liquid and structure. In weak coupling conditions, the modes are predominantly gas mode International Journals of Engineering and Sciences Publisher 2014 Article PeerReviewed text en http://eprints.uthm.edu.my/3966/1/AJ%202017%20%28550%29.pdf Zainulabidin, Muhd Hafeez and Gorman, D. G. (2014) Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container. International Journal of Mechanical & Mechatronics Engineering, 14 (3). pp. 106-113. ISSN 2227-2771
spellingShingle TK1001-1841 Production of electric energy or power. Powerplants. Central stations
Zainulabidin, Muhd Hafeez
Gorman, D. G.
Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container
title Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container
title_full Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container
title_fullStr Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container
title_full_unstemmed Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container
title_short Axial vibration mode of coupled liquid-structure-gas system in a rigid cylindrical container
title_sort axial vibration mode of coupled liquid structure gas system in a rigid cylindrical container
topic TK1001-1841 Production of electric energy or power. Powerplants. Central stations
url http://eprints.uthm.edu.my/3966/1/AJ%202017%20%28550%29.pdf
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