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Experimental investigations of offshore triceratops under regular waves
, , R. Pannerselvam, S. Madhuri, D. Shyamala Varthini
Published in
2011
Volume: 6
   
Pages: 639 - 645
Abstract
For the development of marginal deep water oil fields many new platform concepts and design are emerging. Offshore triceratops is a relatively new concept for ultra deep water oil exploration. Triceratops has desirable characteristics of both TLP and Spar. It consists of deck structure supported on three buoyant leg structures (BLS) connected through ball joints. These joints make them a stable and heave restrained system; they do not pitch and roll but have limited surge and sway. The three BLS structures are connected to sea floor by tethering system. The present study discusses detailed experimental investigations carried out to analyze the structural response on the 1:150 scaled model of triceratops under regular waves. Influence of ball joints and tether tension variation on deck response is studied. Based on the experimental studies conducted, it is seen that deck response of Triceratops is relatively lower than BLS; deck remains horizontal for the encountered wave loads. Copyright © 2011 by ASME.
About the journal
JournalProceedings of the International Conference on Offshore Mechanics and Arctic Engineering - OMAE
Open AccessNo
Concepts (20)
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    BALL JOINTS
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    DECK STRUCTURES
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    DEEP WATER
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    Experimental investigations
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    Experimental studies
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    OIL EXPLORATION
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    PLATFORM CONCEPT
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    Regular waves
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    SCALED MODELS
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    SEA FLOOR
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    Structural response
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    TETHER TENSION VARIATION
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    ULTRA DEEPWATERS
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    WAVE LOAD
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    ARCTIC ENGINEERING
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    Ocean engineering
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    OFFSHORE OIL FIELDS
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    Oil field development
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    Structural design
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    OFFSHORE PETROLEUM PROSPECTING