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COMPARISON OF SEA ICE SIMULATIONS WITH INTERACTIVE AND MONTHLY AVERAGED FORCING MODELS

机译:海冰模拟与交互式和每月平均强迫模型的比较

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A dynamic-thermodynamic sea ice model is developed and coupled with the ''21 wave 9 level'' Melbourne University general circulation model to simulate the seasonal cycle of the global sea ice distribution. We have run the coupled system and obtained a creditable seasonal simulation of global sea ice. When monthly averaged atmospheric data (taken from the mean of the coupled run) are used to force the sea ice model, the seasonal cycle of sea ice extent (to the outer ice edge) is quite similar to that simulated in the interactive run. However, the actual sea ice covered area (i.e., excluding leads) differs considerably between the two simulations. Sea ice is more compact in the monthly averaged forced run than in the interactive run throughout the year in both hemispheres. The sea ice thickness distribution also differs between the two runs. In general, the sea ice is more open and thicker in the seasonal ice zone of the two polar regions for the interactive coupled case than for the mean forcing. We have also run the model forced with daily atmospheric data and the simulated sea ice distribution differs significantly from both the interactive model and the monthly averaged forcing results. These differences highlight the dangers of undertaking studies with sea ice models forced with prescribed atmospheric conditions rather than using a fully interactive atmosphere-sea ice system. [References: 29]
机译:建立了动态​​-热力学海冰模型,并与“ 21波9级”墨尔本大学一般环流模型相结合,以模拟全球海冰分布的季节周期。我们已经运行了耦合系统,并获得了可信的全球海冰季节模拟。当使用月平均大气数据(取自耦合运行的平均值)来强迫海冰模型时,海冰范围(到外部冰缘)的季节性周期与交互式运行中的模拟非常相似。但是,两次模拟之间的实际海冰覆盖面积(即,不包括导线)差异很大。在两个半球中,每月平均强迫行进的海冰比全年的互动行进更为紧凑。两次运行之间的海冰厚度分布也不同。通常,与偶合强迫情况相比,在交互式耦合情况下,两个极地地区的季节性冰区中的海冰更开放,更厚。我们还使用每日大气数据强制运行了该模型,并且模拟的海冰分布与交互式模型和月平均强迫结果均存在显着差异。这些差异突出说明了在规定的大气条件下使用海冰模型进行研究而不是使用完全互动的大气-海冰系统进行研究的危险。 [参考:29]

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