Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)

When designing deep water offshore platform, engineers require an understanding of wave-structure interaction phenomena. In the case of an offshore fixed platform oil rig, the wave run-up on the vertical legs and the amplification of the waves beneath the deck may produce substantial damages to the...

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主要作者: Lu, Jonathan Si'en.
其他作者: Huang Zhenhua
格式: Final Year Project
語言:English
出版: 2009
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在線閱讀:http://hdl.handle.net/10356/16095
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spelling sg-ntu-dr.10356-160952023-03-03T17:03:44Z Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns) Lu, Jonathan Si'en. Huang Zhenhua School of Civil and Environmental Engineering Adi Kurniawan DRNTU::Engineering::Civil engineering::Water resources When designing deep water offshore platform, engineers require an understanding of wave-structure interaction phenomena. In the case of an offshore fixed platform oil rig, the wave run-up on the vertical legs and the amplification of the waves beneath the deck may produce substantial damages to the underside of the lower deck of the structure’s platform. We would term such wave occurrences as extreme run-up in this study. This is often due to deep sea conditions where there are steep short waves. We have focused our review of previous studies on the mechanics of wave uprush of extreme heights and earlier findings on wave interaction with singular and arrayed cylinders. An idea on relevant relationships was understood and their studies also formed the basis of the selection of our parameters and helped us form an independent study on run-ups and arrayed cylinders. Bachelor of Engineering (Civil) 2009-05-21T01:55:41Z 2009-05-21T01:55:41Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/16095 en Nanyang Technological University 40 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Civil engineering::Water resources
spellingShingle DRNTU::Engineering::Civil engineering::Water resources
Lu, Jonathan Si'en.
Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
description When designing deep water offshore platform, engineers require an understanding of wave-structure interaction phenomena. In the case of an offshore fixed platform oil rig, the wave run-up on the vertical legs and the amplification of the waves beneath the deck may produce substantial damages to the underside of the lower deck of the structure’s platform. We would term such wave occurrences as extreme run-up in this study. This is often due to deep sea conditions where there are steep short waves. We have focused our review of previous studies on the mechanics of wave uprush of extreme heights and earlier findings on wave interaction with singular and arrayed cylinders. An idea on relevant relationships was understood and their studies also formed the basis of the selection of our parameters and helped us form an independent study on run-ups and arrayed cylinders.
author2 Huang Zhenhua
author_facet Huang Zhenhua
Lu, Jonathan Si'en.
format Final Year Project
author Lu, Jonathan Si'en.
author_sort Lu, Jonathan Si'en.
title Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
title_short Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
title_full Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
title_fullStr Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
title_full_unstemmed Wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
title_sort wave action on oil rig cylinder members (extreme run-up of waves interacting with an array of columns)
publishDate 2009
url http://hdl.handle.net/10356/16095
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