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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Influence of sea ice on the atmosphere: A study with an Arctic atmospheric regional climate model
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Influence of sea ice on the atmosphere: A study with an Arctic atmospheric regional climate model

机译:海冰对大气的影响:一项关于北极大气区域气候模型的研究

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摘要

The impact of the lower-boundary forcing over ocean grid points, namely of sea surface temperature (SST), sea ice fraction, and sea ice thickness, on the mean atmospheric simulation is investigated with an Arctic atmospheric regional climate model. The assessment shows that the sea ice/SST forcing has an impact on the atmospheric simulations. The near-surface air temperature response shows a strong, seasonally dependent sensitivity to sea ice changes. The response is small in summer but significant in winter, and changes in the marginal ice zone have the largest impact on the atmosphere. During winter, the realistic representation of the marginal sea ice zone is important as it contributes to the simulation of regional atmospheric circulation patterns and temperature profiles. Changes in sea ice thickness of the western Arctic lower boundary indicate an Arctic-wide response in the large-scale circulation and seem to have an impact on the troposphere-stratosphere coupling. During summer the direct thermodynamic effect of sea ice changes is small, while the dynamic response is still of importance but smaller than in winter.
机译:利用北极大气区域气候模型研究了低边界强迫对海洋网格点的影响,即海面温度(SST),海冰分数和海冰厚度对平均大气模拟的影响。评估表明,海冰/ SST强迫对大气模拟有影响。近地表的空气温度响应显示出强烈的,季节性相关的对海冰变化的敏感性。夏季的响应很小,而冬季的响应很大,边缘冰区的变化对大气的影响最大。在冬季,边缘海冰带的真实表示很重要,因为它有助于模拟区域大气环流模式和温度剖面。北极西部下边界海冰厚度的变化表明,在大规模环流中北极范围内的响应,似乎对对流层-平流层耦合产生了影响。在夏季,海冰变化的直接热力学效应很小,而动态响应仍然很重要,但比冬季要小。

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