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首页> 外文期刊>Geophysical Research Letters >Effect of sea ice morphology during Arctic summer on atmospheric drag coefficients used in climate models
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Effect of sea ice morphology during Arctic summer on atmospheric drag coefficients used in climate models

机译:北极夏季夏季海冰形态对气候模型中大气阻力系数的影响

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摘要

Realistic modeling of polar sea ice dynamics and atmospheric processes over sea ice needs a detailed representation of the near-surface atmospheric fluxes of momentum. In this study, parametrizations of neutral drag coefficients mostly used in different general circulation models are compared with a recently developed parametrization including the impact of sea ice morphology. The new parametrization, using the sea ice and melt pond fraction as governing parameters, accounts for the effect of form drag caused by edges at leads, melt ponds, and floes. Based on remote sensing data of ice and melt pond fraction, it is shown that during Arctic summer the traditionally used drag coefficients differ from the new ones by a factor 0.5-1.2. The geographic distribution of drag coefficients obtained from both parametrizations is very different. Differences are due to a nonlinear and non-monotonic dependence of drag coefficients on sea ice concentration in the new parametrization.
机译:极地海冰动力学和海冰上大气过程的逼真的建模需要详细描述近地表大气动量通量。在这项研究中,将在不同的一般循环模型中最常用的中性阻力系数的参数化与最近开发的包括海冰形态影响的参数化进行了比较。使用海冰和融化池部分作为控制参数的新参数化解决了由铅,融化池和絮凝物的边缘引起的形状阻力的影响。根据冰和融化池部分的遥感数据,表明在北极夏季,传统使用的阻力系数与新阻力系数相差0.5-1.2。从这两个参数设置获得的阻力系数的地理分布非常不同。差异归因于新参数化中阻力系数对海冰浓度的非线性和非单调依赖性。

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