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首页> 外文期刊>Journal of hydrometeorology >Blowing Snow on Arctic Sea Ice: Results from an Improved Sea Ice-Snow-Blowing Snow Coupled System
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Blowing Snow on Arctic Sea Ice: Results from an Improved Sea Ice-Snow-Blowing Snow Coupled System

机译:在北极海冰上吹雪:改进的海冰吹雪耦合系统的结果

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A one-dimensional (1D) version of a blowing snow model, called PIEKTUK-D, has been incorporated into a snow-sea ice coupled system. Blowing snow results in sublimation of approximately 12 mm of snow water equivalent (SWE), which is equal to approximately 6% of the annual precipitation over 324 days from 1997 to 1998. This effect leads to an average decrease of 9 cm in snow depth for an 11-month simulation of the Surface Heat Budget of the Arctic Ocean (SHEBA) dataset (from 31 October 1997 to 1 October 1998). Inclusion of blowing snow has a significant impact on snow evolution between February and June, during which it is responsible for a decrease in snow depth error by about 30%. Between November and January, however, other factors such as regional surface topography or horizontal wind transport may have had a greater influence on the evolution of the snowpack and sea ice. During these few months the new system does not perform as well, with a snow depth percentage error of 39%-much larger than the 12% error found between February and June. The results also indicate a slight increase of 4 cm on average for ice thickness, and a decrease of 0.4 K for the temperature at the snow-ice interface. One of the main effects of blowing snow is to shorten the duration of snow cover above sea ice by approximately 4 days and to lead to earlier ice melt by approximately 6 days. Blowing snow also has a very small impact on internal characteristics of the snowpack, such as grain size and density, leading to a weaker snowpack.
机译:一个吹雪模型的一维(1D)版本称为PIEKTUK-D,已合并到一个雪海冰耦合系统中。吹雪导致升华大约12毫米的雪水当量(SWE),相当于从1997年到1998年的324天内年降水量的大约6%。这种影响导致雪深平均降低9厘米。对北冰洋地表热量收支(SHEBA)数据集进行了为期11个月的模拟(从1997年10月31日至1998年10月1日)。包含吹雪对2月至6月之间的积雪发展有重大影响,在此期间,积雪深度误差减少了约30%。然而,在11月至1月之间,其他因素(例如区域表面地形或水平风向运输)可能对积雪和海冰的演变产生了更大的影响。在这几个月中,新系统运行不佳,积雪深度百分比误差为39%,比2月到6月之间的12%误差大得多。结果还表明,冰厚度平均略微增加了4 cm,而冰雪界面的温度平均降低了0.4K。吹雪的主要作用之一是将海冰上方积雪的持续时间缩短约4天,并使较早的冰融化约6天。吹雪对积雪的内部特征(例如颗粒大小和密度)的影响也很小,从而导致积雪变弱。

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