首页> 外文期刊>Journal of Glaciology >Impact of model resolution on simulated wind, drifting snow and surface mass balance in Terre Adélie, East Antarctica
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Impact of model resolution on simulated wind, drifting snow and surface mass balance in Terre Adélie, East Antarctica

机译:模型分辨率对南极东部TerreAdélie的模拟风,飘雪和地表质量平衡的影响

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This paper presents the impact of model resolution on the simulated wind speed, drifting snow climate and surface mass balance (SMB) of Terre Adélie and its surroundings, East Antarctica. We compare regional climate model simulations at 27 and 5.5 km resolution for the year 2009. The wind speed maxima in Terre Adélie and the narrow glacial valleys of Victoria Land are better represented at 5.5 km resolution, because the topography is better resolved. Drifting snow sublimation is >100mma ~(-1) in regions with high wind speeds. Our results indicate a strong feedback between topography, wind gradients and drifting snow erosion. As a result, SMB shows much more local spatial variability at 5.5 km resolution that is controlled by drifting snow erosion, whereas the large-scale SMB gradient is largely determined by precipitation. Drifting snow processes lead to ablation in the narrow glacial valleys of Victoria Land. The integrated SMB equals 86Gt. Although wind climate, drifting snow processes and SMB variability are better represented at 5.5 km, the area-integrated SMB is not significantly different between the simulations at 27 and 5.5km. A horizontal resolution of 27 km is sufficient to realistically simulate ice-sheet wide SMB.
机译:本文介绍了模型分辨率对东南极洲TerreAdélie及其周边地区模拟风速,飘雪气候和地表质量平衡(SMB)的影响。我们比较了2009年在27和5.5 km分辨率下的区域气候模型模拟。在5.5 km分辨率下,TerreAdélie和维多利亚州土地的狭窄冰川谷的最大风速得到了更好的体现,因为地形得到了更好的解决。在高风速地区,飘雪升华大于100mma〜(-1)。我们的结果表明地形,风梯度和漂移的雪蚀之间有很强的反馈。结果,SMB在5.5 km分辨率下显示出更多的局部空间变异性,这是由漂移的雪蚀控制的,而大规模SMB梯度很大程度上取决于降水。飘雪过程导致维多利亚州狭窄的冰川山谷消融。集成的SMB等于86Gt。尽管在5.5 km处风能,积雪过程和SMB变异性表现得更好,但在27 km和5.5 km处的模拟之间,面积综合SMB并没有明显差异。 27 km的水平分辨率足以真实地模拟冰盖范围的SMB。

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