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Grain-size evolution of polar firn: a new empirical grain growth parameterization based on X-ray microcomputer tomography measurements

机译:极性烧结的晶粒尺寸演化:基于X射线计算机断层扫描测量的新型经验性晶粒生长参数化

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Firn microstructure properties from six different sites in Greenland and Antarctica are investigated by means of X-ray microcomputer tomography. The optical effective radius is calculated from the specific surface area (SSA) and used as a measure of grain size. It is shown that the recently introduced spherical approximation of firn grains using the effective radius Reff is representative of grain size in the microwave frequency region. The measured profiles show the well-known increase of grain size with depth at all sites, where the increase is largest at near-surface depths. A large variability in grain size on the decimeter-to-centimeter scale as a result of different grain properties of single layers is superimposed on the overall trend at each site. A simple empirical parameterization of grain-size evolution is developed which allows the rapid grain growth in the uppermost layers of the firn to be predicted. The growth is driven by strong seasonal and diurnal temperature gradients. The model can be used to simulate grain-size profiles required by models of firn/microwave interaction (e.g. for retrieval of accumulation rates from satellite microwave sensors) in a more realistic fashion.
机译:通过X射线微计算机断层扫描技术研究了格陵兰和南极洲六个不同地点的鱼骨微结构特性。根据比表面积(SSA)计算光学有效半径,并将其用作晶粒尺寸的度量。结果表明,最近引入的使用有效半径Reff的烧结晶粒的球形近似代表了微波频率范围内的晶粒尺寸。测得的剖面图显示了众所周知的晶粒尺寸在所有位置随深度的增加,其中增加在近地表深度处最大。由于单层晶粒特性的不同,晶粒尺寸在分米-厘米范围内的较大变化会叠加在每个位置的总体趋势上。研究了晶粒尺寸演变的简单经验参数化,该参数化可以预测炉膛最上层的晶粒快速生长。增长受到强劲的季节性和昼夜温度梯度的驱动。该模型可用于以更现实的方式模拟烧结/微波相互作用模型所需的晶粒尺寸轮廓(例如,用于从卫星微波传感器获取累积速率)。

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