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首页> 外文期刊>Polar Research >The impact of a thermodynamic sea-ice module in the COSMO numerical weather prediction model on simulations for the Laptev Sea, Siberian Arctic
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The impact of a thermodynamic sea-ice module in the COSMO numerical weather prediction model on simulations for the Laptev Sea, Siberian Arctic

机译:COSMO数值天气预报模型中热力学海冰模块对西伯利亚北极拉普捷夫海的模拟的影响

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AbstractPrevious versions of the Consortium for Small-scale Modelling (COSMO) numerical weather prediction model have used a constant sea-ice surface temperature, but observations show a high degree of variability on sub-daily timescales. To account for this, we have implemented a thermodynamic sea-ice module in COSMO and performed simulations at a resolution of 15 km and 5 km for the Laptev Sea area in April 2008. Temporal and spatial variability of surface and 2-m air temperature are verified by four automatic weather stations deployed along the edge of the western New Siberian polynya during the Transdrift XIII-2 expedition and by surface temperature charts derived from Moderate Resolution Imaging Spectroradiometer (MODIS) satellite data. A remarkable agreement between the new model results and these observations demonstrates that the implemented sea-ice module can be applied for short-range simulations. Prescribing the polynya areas daily, our COSMO simulations provide a high-resolution and high-quali...
机译:摘要小规模模型联盟(COSMO)数值天气预报模型的先前版本使用恒定的海冰表面温度,但观测结果显示次日尺度上的高度可变性。为了解决这个问题,我们在COSMO中实施了一个热力学海冰模块,并于2008年4月对拉普捷夫海域以15 km和5 km的分辨率进行了模拟。地表和2 m气温的时空变化是在Transdrift XIII-2探险期间,由沿着新西伯利亚polynya西部边缘部署的四个自动气象站以及由中等分辨率成像光谱仪(MODIS)卫星数据得出的地表温度图进行了验证。新模型结果与这些观测结果之间的显着一致性表明,已实现的海冰模块可用于短程模拟。我们每天都会对Polynya地区开出处方,我们的COSMO模拟可提供高分辨率和高质量的...

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