1989 年至 2012 年鄂霍次克海的海冰和海浪

IF 3.8 2区 工程技术 Q1 ENGINEERING, CIVIL Cold Regions Science and Technology Pub Date : 2024-04-29 DOI:10.1016/j.coldregions.2024.104219
Yukinobu Sato , Keisuke Nakayama , Kazutaka Tateyama , Katsuaki Komai
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引用次数: 0

摘要

北海道鄂霍次克海沿岸是北太平洋海冰到达海岸的最南端地区。事实证明,全球变暖会影响并减少鄂霍次克海的冰覆盖面积。因此,本研究旨在通过分析冰盖面积、海冰体积、显著波高和显著波周期,研究鄂霍次克海海冰与海浪之间的关系。此外,我们还尝试利用卫星图像阐明 1989 年至 2012 年期间冰盖面积和海冰体积的变化趋势。鄂霍次克海北部的海冰量与显波高度和显波周期相关。此外,自 2001 年或 2002 年以来,冰盖面积和海冰体积有所减少,这可能会增强冬季的波浪作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Sea ice and waves in the Sea of Okhotsk from 1989 to 2012

Coastlines along the Sea of Okhotsk in Hokkaido are the southernmost regions in the northern Pacific Ocean where sea ice reaches the coast. It has been demonstrated that global warming affects and decreases the ice cover area in the Sea of Okhotsk. This study thus aims to investigate the relationship between sea ice and waves in the Sea of Okhotsk by analyzing ice cover area, sea ice volume, significant wave height and significant wave period. Additionally, we made an attempt to clarify trends in ice cover area and sea ice volume from 1989 to 2012 using satellite images. Sea ice volumes in the northern part of the Sea of Okhotsk correlate with significant wave height and significant wave period. Furthermore, ice cover area and sea ice volume have decreased since 2001 or 2002, which may enhance wave action during winter.

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来源期刊
Cold Regions Science and Technology
Cold Regions Science and Technology 工程技术-地球科学综合
CiteScore
7.40
自引率
12.20%
发文量
209
审稿时长
4.9 months
期刊介绍: Cold Regions Science and Technology is an international journal dealing with the science and technical problems of cold environments in both the polar regions and more temperate locations. It includes fundamental aspects of cryospheric sciences which have applications for cold regions problems as well as engineering topics which relate to the cryosphere. Emphasis is given to applied science with broad coverage of the physical and mechanical aspects of ice (including glaciers and sea ice), snow and snow avalanches, ice-water systems, ice-bonded soils and permafrost. Relevant aspects of Earth science, materials science, offshore and river ice engineering are also of primary interest. These include icing of ships and structures as well as trafficability in cold environments. Technological advances for cold regions in research, development, and engineering practice are relevant to the journal. Theoretical papers must include a detailed discussion of the potential application of the theory to address cold regions problems. The journal serves a wide range of specialists, providing a medium for interdisciplinary communication and a convenient source of reference.
期刊最新文献
Editorial Board Prototype observation and analysis of static ice pressure on reservoir piers in cold regions Relationship of physical and mechanical properties of sea ice during the freeze-up season in Nansen Basin New insights into icephobic material assessment: Introducing the human motion–inspired automated apparatus (HMA) Mesoscopic shear evolution characteristics of frozen soil-concrete interface
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