A Moored Arctic Floater

First-year sea ice ridges are a major concern for structures operating in the Arctic off-shore and will in many cases give the design mooring load. In this paper, the response of a moored conical floater, somewhat similar to the well-known Kulluk, is studied in first-year ridges. The study is based...

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Bibliographic Details
Main Authors: Oddgeir Dalane, Vegard Aksnes, Sveinung Løset, In First-year Sea Ice Ridges
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
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Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.660.1186
http://offshoremechanics.asmedigitalcollection.asme.org/data/Journals/JMOEEX/930926/omae_137_01_011501.pdf
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Summary:First-year sea ice ridges are a major concern for structures operating in the Arctic off-shore and will in many cases give the design mooring load. In this paper, the response of a moored conical floater, somewhat similar to the well-known Kulluk, is studied in first-year ridges. The study is based on model tests performed at Hamburg Ship Model Basin (HSVA) in several ridges with different properties. Mooring forces and floater response, resulting from interaction with different ridges, were compared with respect to ridge properties, ridge behavior, and simulated ice management. Clearance of accumulated rubble upstream the structure was the dominating physical process in the ridge–structure interaction. Accumulation of rubble caused large mooring forces. The amount of accumu-lated rubble depended on the ridge cross-sectional area, thus the mooring forces increased with ridge cross-sectional area. Large mooring forces were also experienced after the ridge was passed by the structure due to difficulties with clearing of accumu-lated rubble. [DOI:10.1115/1.4028814]