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北冰洋西部海冰中的风浪与全球波浪-海冰耦合模型。

Wind waves in sea ice of the western Arctic and a global coupled wave-ice model.

作者信息

Cooper V T, Roach L A, Thomson J, Brenner S D, Smith M M, Meylan M H, Bitz C M

机构信息

Department of Atmospheric Sciences, University of Washington, Seattle, WA 98195, USA.

Applied Physics Laboratory, University of Washington, Seattle, WA 98105, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2022 Oct 31;380(2235):20210258. doi: 10.1098/rsta.2021.0258. Epub 2022 Sep 12.

Abstract

The retreat of Arctic sea ice is enabling increased ocean wave activity at the sea ice edge, yet the interactions between surface waves and sea ice are not fully understood. Here, we examine observations of wave spectra spanning 2012-2021 in the western Arctic marginal ice zone (MIZ). Swells exceeding 30 cm are rarely observed beyond 100 km inside the MIZ. However, local wind waves are observed in patches of open water amid partial ice cover during the summer. These local waves remain fetch-limited between ice floes with heights less than 1 m. To investigate these waves at climate scales, we conduct experiments varying wave attenuation and generation in ice with a global model including coupled interactions between waves and sea ice. A weak high-frequency attenuation rate is required to simulate the local waves in observations. The choices of attenuation scheme and wind input in ice have a remarkable impact on the extent of wave activity across ice-covered oceans, particularly in the Antarctic. As well as demonstrating the need for stronger constraints on wave attenuation, our results suggest that further attention should be directed towards locally generated wind waves and their role in sea ice evolution. This article is part of the theme issue 'Theory, modelling and observations of marginal ice zone dynamics: multidisciplinary perspectives and outlooks'.

摘要

北极海冰的消退使得海冰边缘的海浪活动增加,但表面波与海冰之间的相互作用尚未完全被理解。在此,我们研究了2012年至2021年期间在北极西部边缘冰区(MIZ)的波谱观测数据。在MIZ内100公里以外很少观测到超过30厘米的涌浪。然而,在夏季部分冰盖区域的开阔水域斑块中观测到了局部风浪。这些局部波浪在浮冰之间的传播距离有限,波高小于1米。为了在气候尺度上研究这些波浪,我们使用一个包括波浪与海冰耦合相互作用的全球模型,进行了改变冰中波衰减和生成的实验。模拟观测中的局部波浪需要一个较弱的高频衰减率。冰中衰减方案和风输入的选择对整个冰封海洋的波浪活动范围有显著影响,特别是在南极。我们的结果不仅表明需要对波衰减施加更强的约束,还表明应进一步关注局部产生的风浪及其在海冰演变中的作用。本文是主题为“边缘冰区动力学的理论、建模与观测:多学科视角与展望”的一部分。

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