冬季北极海冰的形态及其与风和洋流的关系

IF 4.4 2区 地球科学 Q1 GEOGRAPHY, PHYSICAL Cryosphere Pub Date : 2023-08-17 DOI:10.5194/tc-17-3291-2023
S. Willmes, G. Heinemann, F. Schnaase
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引用次数: 1

摘要

摘要基于卫星观测,我们对2002/03年至2020/21年冬季使用了一种新的海冰铅气候学 平方公里的空间分辨率,以确定北极冬季海冰导线的主要模式。分别使用海洋模型(有限元海冰-冰架-海洋模型,FESEM)的海面流速和涡动能以及区域气候模型(CCLM)和ERA5再分析的风,研究了观测到的空间和时间变化的原因。所提出的调查提供了证据,证明海洋测深和相关洋流对海冰的机械弱化以及伴随而来的海冰引线的出现及其特征空间模式的影响。虽然这一观测的驱动机制尚未得到详细了解,但所提供的结果有助于开启关于海洋-海冰相互作用的新假设。海洋和大气对区域铅动力学的单独贡献是复杂的,需要结合海岸几何形状的考虑进行详细的机制调查才能更深入地了解。虽然海洋对铅动力学的影响似乎是长期的(季节性到年际性),但风的影响似乎在几周到几个月的较短时间尺度上触发了海冰铅动力学,并且在很大程度上受到导致差异增加的个别事件的控制。没有观察到冬季铅的明显泛北极趋势。
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Patterns of wintertime Arctic sea-ice leads and their relation to winds and ocean currents
Abstract. We use a novel sea-ice lead climatology for the winters of 2002/03 to 2020/21 based on satellite observations with 1 km2 spatial resolution to identify predominant patterns in Arctic wintertime sea-ice leads. The causes for the observed spatial and temporal variabilities are investigated using ocean surface current velocities and eddy kinetic energies from an ocean model (Finite Element Sea Ice–Ice-Shelf–Ocean Model, FESOM) and winds from a regional climate model (CCLM) and ERA5 reanalysis, respectively. The presented investigation provides evidence for an influence of ocean bathymetry and associated currents on the mechanic weakening of sea ice and the accompanying occurrence of sea-ice leads with their characteristic spatial patterns. While the driving mechanisms for this observation are not yet understood in detail, the presented results can contribute to opening new hypotheses on ocean–sea-ice interactions. The individual contribution of ocean and atmosphere to regional lead dynamics is complex, and a deeper insight requires detailed mechanistic investigations in combination with considerations of coastal geometries. While the ocean influence on lead dynamics seems to act on a rather long-term scale (seasonal to interannual), the influence of wind appears to trigger sea-ice lead dynamics on shorter timescales of weeks to months and is largely controlled by individual events causing increased divergence. No significant pan-Arctic trends in wintertime leads can be observed.
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来源期刊
Cryosphere
Cryosphere GEOGRAPHY, PHYSICAL-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
8.70
自引率
17.30%
发文量
240
审稿时长
4-8 weeks
期刊介绍: The Cryosphere (TC) is a not-for-profit international scientific journal dedicated to the publication and discussion of research articles, short communications, and review papers on all aspects of frozen water and ground on Earth and on other planetary bodies. The main subject areas are the following: ice sheets and glaciers; planetary ice bodies; permafrost and seasonally frozen ground; seasonal snow cover; sea ice; river and lake ice; remote sensing, numerical modelling, in situ and laboratory studies of the above and including studies of the interaction of the cryosphere with the rest of the climate system.
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