海氷の層状微視組織形成のボロノイダイナミクスシミュレーション

Developments of sea ice polycrystals from the sea surface are simulated in two-dimensional approximation by combining numerical methods for crystal growth, salinity diffusion and flux of heat. An anisotropic growth of ice crystals from a number of nuclei and their mutual impingements are numerically...

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Published in:TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A
Main Authors: 河野, 義樹, 大橋, 鉄也
Language:Japanese
Published: 一般社団法人日本機械学会 2008
Subjects:
Online Access:https://kitami-it.repo.nii.ac.jp/record/8028/files/2008_海氷の層状微視組織形成のボロノイダイナミクスシミュレーション.pdf
https://kitami-it.repo.nii.ac.jp/records/8028
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author 河野, 義樹
大橋, 鉄也
author_facet 河野, 義樹
大橋, 鉄也
author_sort 河野, 義樹
collection Kitami Institute of Technology Repository (KIT-R)
container_issue 743
container_start_page 946
container_title TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A
container_volume 74
description Developments of sea ice polycrystals from the sea surface are simulated in two-dimensional approximation by combining numerical methods for crystal growth, salinity diffusion and flux of heat. An anisotropic growth of ice crystals from a number of nuclei and their mutual impingements are numerically reproduced by a simple and novel technique, named Voronoi dynamics. Discharge of salt from solidified region and salinity condensation at the solid-liquid interface are also taken into consideration. Diffusion process of salinity and heat flux are evaluated by solving equations for diffusion and heat conduction, and growth of ice crystals is affected by these two factors. Results show that a layer of granular grains is formed near the sea surface and columnar shaped grains develop below it. Brine regions are mainly formed along grain boundaries in the layer of granular grains. In the region of columnar shaped grains, brine regions exist not only along grain boundaries but also inside grains. Columnar shaped crystal grains consist of ice platelets growing in the vertical direction and brine layers between them. These microstructural features are in accordance with experimental observations. journal article
genre Sea ice
genre_facet Sea ice
id ftkitamiit:oai:kitami-it.repo.nii.ac.jp:00008028
institution Open Polar
language Japanese
op_collection_id ftkitamiit
op_container_end_page 953
op_doi https://doi.org/10.1299/kikaia.74.946
op_relation http://doi.org/10.1299/kikaia.74.946
日本機械学會論文集. A編
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op_rights c 2008 一般社団法人日本機械学会
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publisher 一般社団法人日本機械学会
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spelling ftkitamiit:oai:kitami-it.repo.nii.ac.jp:00008028 2025-04-06T15:05:30+00:00 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション Voronoi Dynamics Simulation of Development of Lamellar Microstructure in Sea Ice 河野, 義樹 大橋, 鉄也 2008-07 application/pdf https://kitami-it.repo.nii.ac.jp/record/8028/files/2008_海氷の層状微視組織形成のボロノイダイナミクスシミュレーション.pdf https://kitami-it.repo.nii.ac.jp/records/8028 jpn jpn 一般社団法人日本機械学会 http://doi.org/10.1299/kikaia.74.946 日本機械学會論文集. A編 743 74 946 953 c 2008 一般社団法人日本機械学会 open access Sea Ice Crystal Growth Microstructure Brine Region Ice Platelet 2008 ftkitamiit https://doi.org/10.1299/kikaia.74.946 2025-03-10T11:33:07Z Developments of sea ice polycrystals from the sea surface are simulated in two-dimensional approximation by combining numerical methods for crystal growth, salinity diffusion and flux of heat. An anisotropic growth of ice crystals from a number of nuclei and their mutual impingements are numerically reproduced by a simple and novel technique, named Voronoi dynamics. Discharge of salt from solidified region and salinity condensation at the solid-liquid interface are also taken into consideration. Diffusion process of salinity and heat flux are evaluated by solving equations for diffusion and heat conduction, and growth of ice crystals is affected by these two factors. Results show that a layer of granular grains is formed near the sea surface and columnar shaped grains develop below it. Brine regions are mainly formed along grain boundaries in the layer of granular grains. In the region of columnar shaped grains, brine regions exist not only along grain boundaries but also inside grains. Columnar shaped crystal grains consist of ice platelets growing in the vertical direction and brine layers between them. These microstructural features are in accordance with experimental observations. journal article Other/Unknown Material Sea ice Kitami Institute of Technology Repository (KIT-R) TRANSACTIONS OF THE JAPAN SOCIETY OF MECHANICAL ENGINEERS Series A 74 743 946 953
spellingShingle Sea Ice
Crystal Growth
Microstructure
Brine Region
Ice Platelet
河野, 義樹
大橋, 鉄也
海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
title 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
title_full 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
title_fullStr 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
title_full_unstemmed 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
title_short 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
title_sort 海氷の層状微視組織形成のボロノイダイナミクスシミュレーション
topic Sea Ice
Crystal Growth
Microstructure
Brine Region
Ice Platelet
topic_facet Sea Ice
Crystal Growth
Microstructure
Brine Region
Ice Platelet
url https://kitami-it.repo.nii.ac.jp/record/8028/files/2008_海氷の層状微視組織形成のボロノイダイナミクスシミュレーション.pdf
https://kitami-it.repo.nii.ac.jp/records/8028