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Elevation change of the Greenland Ice Sheet due to surface mass balance and firn processes, 1960a??2014

机译:1960a-2014年,由于表面质量平衡和烧制过程,格陵兰冰原的高程变化

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pstrongAbstract./strong Observed changes in the surface elevation of the Greenland Ice Sheet are caused by ice dynamics, basal elevation change, basal melt, surface mass balance (SMB) variability, and by compaction of the overlying firn. The last two contributions are quantified here using a firn model that includes compaction, meltwater percolation, and refreezing. The model is forced with surface mass fluxes and temperature from a regional climate model for the period 1960a??2014. The model results agree with observations of surface density, density profiles from 62 firn cores, and altimetric observations from regions where ice-dynamical surface height changes are likely small. In areas with strong surface melt, the firn model overestimates density. We find that the firn layer in the high interior is generally thickening slowly (1a??5 cm yrsupa??1/sup). In the percolation and ablation areas, firn and SMB processes account for a surface elevation lowering of up to 20a??50 cm yrsupa??1/sup. Most of this firn-induced marginal thinning is caused by an increase in melt since the mid-1990s and partly compensated by an increase in the accumulation of fresh snow around most of the ice sheet. The total firn and ice volume change between 1980 and 2014 is estimated at a??3295 ?± 1030 kmsup3/sup due to firn and SMB changes, corresponding to an ice-sheet average thinning of 1.96 ?± 0.61 m. Most of this volume decrease occurred after 1995. The computed changes in surface elevation can be used to partition altimetrically observed volume change into surface mass balance and ice-dynamically related mass changes./p.
机译:> >摘要。观察到的格陵兰冰原表面高度变化是由冰动力学,基础高度变化,基础融化,表面质量平衡(SMB)变异性以及上覆层的压实引起的开枪在这里,最后两个贡献是使用包括压实,融化水渗滤和再冻在内的firn模型进行量化的。该模型是根据1960a-2014年期间区域气候模型的表面质量通量和温度强迫的。该模型结果与表面密度的观测结果,62个n核的密度分布以及冰动力学表面高度变化可能很小的区域的高度观测结果一致。在表面融化强烈的区域,firn模型高估了密度。我们发现高内部的烧成层通常缓慢增厚(1a ?? 5 cm yr a ?? 1 )。在渗流和烧蚀区域,烧结和SMB工艺可将表面高度降低最多20a ?? 50 cm yr a ?? 1 。这种由杉木引起的边缘变薄大部分是由1990年代中期以来的融化增加引起的,而部分被大部分冰盖周围新鲜积雪的增加所弥补。 1980年至2014年之间,由于烧成和SMB的变化,总的烧成和冰量变化估计为a ?? 3295?±1030 km 3 ,对应于冰盖平均变薄1.96?±0.61米体积减少的大部分发生在1995年之后。计算得到的表面高度变化可用于将高度观测的体积变化划分为表面质量平衡和与冰动力学相关的质量变化。

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