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首页> 外文期刊>Journal of Glaciology >Snow/atmosphere coupled simulation at Dome C, Antarctica
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Snow/atmosphere coupled simulation at Dome C, Antarctica

机译:南极Dome C的雪/气耦合模拟

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摘要

Using a snow/atmosphere coupled model, the evolution of the surface and near-surface snow temperature is modeled at Dome C, Antarctica, during the period 20-30 January 2010. Firstly, the detailed multilayer snow model Crocus is run in stand-alone mode, with meteorological input forcing data provided by local meteorological observations. The snow model is able to simulate the evolution of surface temperature with good accuracy. It reproduces the observed downward propagation of the diurnal heatwave into the upper 50 cm of the snowpack reasonably well. Secondly, a fully coupled 3-D snow/atmosphere simulation is performed with the AROME regional meteorological model, for which the standard single-layer snow parameterization is replaced by Crocus. In spite of a poor simulation of clouds, the surface and near-surface snow temperatures are correctly simulated, showing neither-significant bias nor drifts during the simulation period. The model reproduces particularly well the average decrease of the diurnal amplitude of air temperature from the surface to the top of the 45 m instrumented tower. This study highlights the potential of snow/atmosphere coupled models over the Antarctic plateau and the need to improve cloud microphysics and data assimilation over polar regions.
机译:使用雪/大气耦合模型,在2010年1月20日至30日的南极Dome C上模拟了地表和近地表雪温度的变化。首先,详细的多层雪模型Crocus是独立运行的模式,并通过气象输入强制提供由当地气象观测提供的数据。雪模型能够以较高的精度模拟地表温度的变化。它可以很好地重现观察到的昼夜热波向下传播到积雪上部50 cm的情况。其次,使用AROME区域气象模型进行了完全耦合的3-D雪/大气模拟,为此,标准的单层雪参数化被Crocus取代。尽管对云的模拟效果很差,但可以正确模拟地表和近地表的积雪温度,在模拟期间既没有明显的偏差也没有漂移。该模型特别好地再现了从45 m仪表塔表面到顶部的气温日平均幅度下降。这项研究强调了南极高原上雪/气耦合模型的潜力,以及对改善极地地区云微物理学和数据同化的需求。

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