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Modeled Stokes drift in the marginal ice zones of the Arctic Ocean

机译:建模的斯托克斯漂移在北冰洋的边缘冰区

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摘要

This study modeled Stokes drift in the marginal ice zone (MIZ) of the Arctic Ocean using WAVEWATCH III. Applying two viscoelastic and one empirical frequency-dependent wave-ice models, modeled wave parameters and spectra were compared with field observations from the Beaufort-Chukchi Sea. The three wave-ice parameterizations showed similar ability in reproducing the surface Stokes drift estimated using buoy measurements. Comparison with buoy drift showed the estimation of total surface drift was improved by considering Stokes drift during significant wave events. Based on 5-year (2015-2019) hindcasted directional spectra of the summer-autumn Arctic, we investigated monthly mean surface Stokes drift (1-10 cm/s), e-folding depth (1-14 m), and vertically integrated transport ( 0.23 m(2)/s) in the MIZ. The results showed that Stokes drift in the MIZ increased in strength from July to October. When bulk wave parameters were adopted to estimate Stokes drift fields, the surface Stokes drift was underestimated by about 34-50%, while the Stokes e-folding depth was overestimated by approximately 1.4-5.0 times, increasing from the interior to the edge of the ice cover. We compared the modeled surface Stokes drift with the Eulerian mean flow from reanalyzed data. It showed the mean surface Stokes drift is typically approximately 30% of the Eulerian current over large parts of the Arctic Ocean MIZ with mean ice concentration 60%, and is the same order of magnitude as (or even larger than) some areas of the Chukchi, East Siberian, and Laptev Seas. It implies Stokes drift should be considered to improve modeling of the dynamic processes of sea ice, especially ice floe drift.
机译:本研究使用Wavewatch III在北冰海洋的边缘冰区(MIZ)中建模的斯托克斯漂移。将两个粘弹性和一个经验频率依赖的波冰模型,建模波参数和光谱与来自Beaufort-Chukchi海的场观测进行了比较。三个波冰参数化表明,在使用浮标测量的估计估计的表面斯托克斯漂移方面具有相似的能力。与浮标漂移的比较显示,通过考虑在显着波动事件期间的斯托克斯漂移来提高总表面漂移的估计。基于5年(2015-2019)夏季北极的Hindcasted定向光谱,我们调查了每月平均表面Stokes漂移(1-10cm / s),电子折叠深度(1-14米),垂直整合在Miz中运输(& 0.23米(2)/ s)。结果表明,在七月至十月的力量中,斯托克斯漂移在力量中增加。当采用散热波参数估计斯托克斯漂移场时,表面斯托克斯漂移低估约34-50%,而斯托克斯电子折叠深度被大约1.4-5.0倍升高,从内部增加到边缘冰盖。我们将建模的表面Stokes漂移与来自重新分析数据的欧拉平均流量进行了比较。它显示平均表面斯托克斯漂移通常约占欧拉电流的大约30%,在北冰洋Miz的大部分中,平均冰浓度& 60%,并且与Chukchi,East Siberian和Laptev Seas的某些地区相同的数量级。它意味着斯托克斯漂移应该被认为改善了海冰的动态过程的建模,尤其是冰川漂移。

著录项

  • 来源
    《Ocean Dynamics》 |2021年第5期|509-525|共17页
  • 作者单位

    Ocean Univ China CIMST Phys Oceanog Lab Qingdao Peoples R China|Qingdao Natl Lab Marine Sci & Technol Qingdao Peoples R China;

    Minist Nat Resources North China Sea Marine Forecasting Ctr Qingdao Peoples R China;

    Ocean Univ China CIMST Phys Oceanog Lab Qingdao Peoples R China|Qingdao Natl Lab Marine Sci & Technol Qingdao Peoples R China;

    Minist Nat Resources North China Sea Data & Informat Serv Qingdao Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stokes drift; Marginal ice zones; Arctic Ocean; Wave#8211; ice parameterization; Modeled waves; WAVEWATCH III;

    机译:Stokes漂移;边缘冰区;北极海洋;波和#8211;冰参数化;模拟的波;Wavewatch III;

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