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Study on the procedure to obtain an attainable speed in pack ice

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dc.contributor.authorKim, Hyun Soo-
dc.contributor.authorJeong, Seong-Yeob-
dc.contributor.authorWoo, Sun-Hong-
dc.contributor.authorHan, Donghwa-
dc.date.accessioned2021-08-03T04:28:33Z-
dc.date.available2021-08-03T04:28:33Z-
dc.date.issued2018-07-
dc.identifier.issn2092-6782-
dc.identifier.issn2092-6790-
dc.identifier.urihttps://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/456-
dc.description.abstractThe cost evaluation for voyage route planning in an ice-covered sea is one of the major topics among ship owners. Information of the ice properties, such as ice type, concentration of ice, ice thickness, strength of ice, and speed-power relation under ice conditions are important for determining the optimal route in ice and low operational cost perspective. To determine achievable speed at any designated pack ice condition, a model test of resistance, self-propulsion, and overload test in ice and ice-free water were carried out in a KRISO ice tank and towing tank. The available net thrust for ice and an estimation of the ice resistance under any pack ice condition were also performed by I-RES. The in-house code called 'I-RES', which is an ice resistance estimation tool that applies an empirical formula, was modified for the pack ice module in this study. Careful observations of underwater videos of the ice model test made it possible to understand the physical phenomena of underneath of the hull bottom surface and determine the coverage of buoyancy. The clearing resistance of ice can be calculated by subtracting the buoyance and open water resistance form the pre-sawn ice resistance. The model test results in pack ice were compared with the calculation results to obtain a correlation factor among the pack ice resistance, ice concentration, and ship speed. The resulting correlation factors were applied to the calculation results to determine the pack ice resistance under any pack ice condition. The pack ice resistance under the arbitrary pack ice condition could be estimated because software I-RES could control all the ice properties. The available net thrust in ice, which is the over thrust that overcomes the pack ice resistance, will change the speed of a ship according to the bollard pull test results and thruster characteristics (engine & propulsion combination). The attainable speed at a certain ice concentration of pack ice was determined using the interpolation method. This paper reports a procedure to determine the attainable speed in pack ice and the sample calculation using the Araon vessel was performed to confirm the entire process. A more detailed description of the determination of the attainable speed is described. The attainable speed in 1.0 m, 90% pack ice and 540 kPa strength was 13.3 knots. Copyright (C) 2017 Production and hosting by Elsevier B.V. on behalf of Society of Naval Architects of Korea.-
dc.format.extent8-
dc.language영어-
dc.language.isoENG-
dc.publisherSOC NAVAL ARCHITECTS KOREA-
dc.titleStudy on the procedure to obtain an attainable speed in pack ice-
dc.typeArticle-
dc.publisher.location대한민국-
dc.identifier.doi10.1016/j.ijnaoe.2017.09.004-
dc.identifier.scopusid2-s2.0-85044955612-
dc.identifier.wosid000440255000007-
dc.identifier.bibliographicCitationINTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING, v.10, no.4, pp 491 - 498-
dc.citation.titleINTERNATIONAL JOURNAL OF NAVAL ARCHITECTURE AND OCEAN ENGINEERING-
dc.citation.volume10-
dc.citation.number4-
dc.citation.startPage491-
dc.citation.endPage498-
dc.type.docTypeArticle-
dc.identifier.kciidART002369332-
dc.description.isOpenAccessN-
dc.description.journalRegisteredClassscie-
dc.description.journalRegisteredClassscopus-
dc.description.journalRegisteredClasskci-
dc.relation.journalResearchAreaEngineering-
dc.relation.journalWebOfScienceCategoryEngineering, Marine-
dc.subject.keywordAuthorPack ice-
dc.subject.keywordAuthorPack ice resistance-
dc.subject.keywordAuthorModel test in ice-
dc.subject.keywordAuthorAttainable speed-
dc.subject.keywordAuthorAvailable net thrust in ice-
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