Ice resistance of ships in brash ice channel: calculation method

Object and purpose of research. This paper discusses modern carrier ships and icebreakers operating in ice channels and harbours, typically filled with brash ice that always forms very quickly in regularly used passages due to harsh Arctic climate, thus seriously impeding navigation. The purpose of...

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Main Authors: Aleksey A. Dobrodeev, Kirill Ye. Sazonov
Format: Article
Language:English
Published: Krylov State Research Centre 2019-08-01
Series:Труды Крыловского государственного научного центра
Subjects:
Online Access:https://transactions-ksrc.ru/eng/archive/Ice-resistance-of-ships-in-brash-ice-channel-calculation-method/
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spelling doaj-22bcb871d4bf4644935734d0ad63d9bd2020-11-25T03:01:09ZengKrylov State Research CentreТруды Крыловского государственного научного центра2542-23242618-82442019-08-013893112110.24937/2542-2324-2019-3-389-11-2125422324Ice resistance of ships in brash ice channel: calculation methodAleksey A. Dobrodeev0Kirill Ye. Sazonov1Krylov State Research CentreKrylov State Research CentreObject and purpose of research. This paper discusses modern carrier ships and icebreakers operating in ice channels and harbours, typically filled with brash ice that always forms very quickly in regularly used passages due to harsh Arctic climate, thus seriously impeding navigation. The purpose of this study is to develop a calculation method for brash ice resistance that would facilitate theoretical estimates of ice propulsion performance for ships under design, and would also be helpful in planning their operation in Arctic conditions. Materials and methods. This paper theoretically describes the phenomena that accompany ship sailing in brash ice channel. Theoretical model is based on the data of full-scale trial data and the model tests performed in KSRC Ice Basin. Main results. Ice resistance calculation method for ship sailing in brash ice channel has been successfully developed. The effect of main parameters in the developed mathematical model has been thoroughly analysed. Calculation results have been compared versus available experimental data. Conclusion. The calculations performed as per this mathematical model for several notional large ice-going ships have shown that breadth and length of their parallel middlebodies, as well as bow shape, have the greatest effect upon resistance. Ice resistance tests performed in KSRC Ice Basin have shown a good correlation between experimental data and calculation results obtained as per the suggested procedure.https://transactions-ksrc.ru/eng/archive/Ice-resistance-of-ships-in-brash-ice-channel-calculation-method/brash iceice channelice resistancefriction forcebuoyancy force
collection DOAJ
language English
format Article
sources DOAJ
author Aleksey A. Dobrodeev
Kirill Ye. Sazonov
spellingShingle Aleksey A. Dobrodeev
Kirill Ye. Sazonov
Ice resistance of ships in brash ice channel: calculation method
Труды Крыловского государственного научного центра
brash ice
ice channel
ice resistance
friction force
buoyancy force
author_facet Aleksey A. Dobrodeev
Kirill Ye. Sazonov
author_sort Aleksey A. Dobrodeev
title Ice resistance of ships in brash ice channel: calculation method
title_short Ice resistance of ships in brash ice channel: calculation method
title_full Ice resistance of ships in brash ice channel: calculation method
title_fullStr Ice resistance of ships in brash ice channel: calculation method
title_full_unstemmed Ice resistance of ships in brash ice channel: calculation method
title_sort ice resistance of ships in brash ice channel: calculation method
publisher Krylov State Research Centre
series Труды Крыловского государственного научного центра
issn 2542-2324
2618-8244
publishDate 2019-08-01
description Object and purpose of research. This paper discusses modern carrier ships and icebreakers operating in ice channels and harbours, typically filled with brash ice that always forms very quickly in regularly used passages due to harsh Arctic climate, thus seriously impeding navigation. The purpose of this study is to develop a calculation method for brash ice resistance that would facilitate theoretical estimates of ice propulsion performance for ships under design, and would also be helpful in planning their operation in Arctic conditions. Materials and methods. This paper theoretically describes the phenomena that accompany ship sailing in brash ice channel. Theoretical model is based on the data of full-scale trial data and the model tests performed in KSRC Ice Basin. Main results. Ice resistance calculation method for ship sailing in brash ice channel has been successfully developed. The effect of main parameters in the developed mathematical model has been thoroughly analysed. Calculation results have been compared versus available experimental data. Conclusion. The calculations performed as per this mathematical model for several notional large ice-going ships have shown that breadth and length of their parallel middlebodies, as well as bow shape, have the greatest effect upon resistance. Ice resistance tests performed in KSRC Ice Basin have shown a good correlation between experimental data and calculation results obtained as per the suggested procedure.
topic brash ice
ice channel
ice resistance
friction force
buoyancy force
url https://transactions-ksrc.ru/eng/archive/Ice-resistance-of-ships-in-brash-ice-channel-calculation-method/
work_keys_str_mv AT alekseyadobrodeev iceresistanceofshipsinbrashicechannelcalculationmethod
AT kirillyesazonov iceresistanceofshipsinbrashicechannelcalculationmethod
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