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Impact of spatial resolution on the modelling of the Greenland ice sheet surface mass balance between 1990–2010, using the regional climate model MAR

机译:使用区域气候模型MAR,空间分辨率对1990-2010年格陵兰冰盖表面质量平衡建模的影响

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With the aim to force an ice dynamical model, the Greenland ice sheet (GrIS) surface mass balance (SMB) was modelled at different spatial resolutions (15–50 km) for the period 1990–2010, using the regional climate model MAR (Modèle Atmosphérique Régional) forced by the ERA-INTERIM reanalysis. This comparison revealed that (i) the inter-annual variability of the SMB components is consistent within the different spatial resolutions investigated, (ii) the MAR model simulates heavier precipitation on average over the GrIS with decreasing spatial resolution, and (iii) the SMB components (except precipitation) can be derived from a simulation at lower resolution with an "intelligent" interpolation. This interpolation can also be used to approximate the SMB components over another topography/ice sheet mask of the GrIS. These results are important for the forcing of an ice dynamical model needed to enable future projections of the GrIS contribution to sea level rise over the coming centuries.
机译:为了强制建立冰动力学模型,使用区域气候模型MAR(Modèle),以不同的空间分辨率(15-50 km)对格陵兰冰盖(GrIS)的表面质量平衡(SMB)进行了建模,以1990-2010年为模型ERA-INTERIM重新分析强制执行的AtmosphériqueRégional)。该比较表明(i)SMB分量的年际变化在所研究的不同空间分辨率内是一致的;(ii)MAR模型模拟了在GrIS上平均降水量增加而空间分辨率降低的情况;以及(iii)SMB分量(降水除外)可以通过“智能”内插从较低分辨率的模拟中获得。该插值还可以用于在GrIS的另一个地形/冰片遮罩上近似SMB分量。这些结果对于强制建立冰动力学模型非常重要,该模型需要使未来几个世纪的GrIS对海平面上升的贡献的未来预测成为可能。

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