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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Evaluation of high-resolution sea ice models on the basis of statistical and scaling properties of Arctic sea ice drift and deformation
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Evaluation of high-resolution sea ice models on the basis of statistical and scaling properties of Arctic sea ice drift and deformation

机译:基于北极海冰漂移和变形的统计和标度特性评估高分辨率海冰模型

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Sea ice drift and deformation from models are evaluated on the basis of statistical and scaling properties. These properties are derived from two observation data sets: the RADARSAT Geophysical Processor System (RGPS) and buoy trajectories from the International. Arctic Buoy Program (IABP). Two simulations obtained with the Louvainla- Neuve Ice Model (LIM) coupled to a high-resolution ocean model and a simulation obtained with the Los Alamos Sea Ice Model (CICE) were analyzed. Model ice drift compares well with observations in terms of large-scale velocity field and distributions of velocity fluctuations although a significant bias on the mean ice speed is noted. On the other hand, the statistical properties of ice deformation are not well simulated by the models: (1) The distributions of strain rates are incorrect: RGPS distributions of strain rates are power law tailed, i.e., exhibit "wild randomness," whereas models distributions remain in the Gaussian attraction basin, i.e., exhibit "mild randomness." (2) The models are unable to reproduce the spatial and temporal correlations of the deformation fields: In the observations, ice deformation follows spatial and temporal scaling laws that express the heterogeneity and the intermittency of deformation. These relations do not appear in simulated ice deformation. Mean deformation in models is almost scale independent. The statistical properties of ice deformation are a signature of the ice mechanical behavior. The present work therefore suggests that the mechanical framework currently used by models is inappropriate. A different modeling framework based on elastic interactions could improve the representation of the statistical and scaling properties of ice deformation.
机译:模型的海冰漂移和变形是根据统计和缩放属性进行评估的。这些属性来自两个观测数据集:RADARSAT地球物理处理器系统(RGPS)和来自国际的浮标轨迹。北极浮标计划(IABP)。分析了用卢旺达-诺伊夫冰模型(LIM)与高分辨率海洋模型耦合获得的两个模拟,以及用洛斯阿拉莫斯海冰模型(CICE)获得的模拟。尽管注意到平均冰速存在明显的偏差,但模型冰漂移在大尺度速度场和速度波动分布方面与观测值比较好。另一方面,模型不能很好地模拟冰变形的统计特性:(1)应变率的分布是不正确的:应变率的RGPS分布是幂律拖尾的,即表现出“野生随机性”,而模型分布仍保留在高斯吸引盆地中,即表现出“温和的随机性”。 (2)模型无法再现形变场的时空相关性:在观测中,冰的变形遵循表示形变的非均质性和间歇性的时空尺度定律。这些关系不会出现在模拟的冰变形中。模型中的平均变形几乎与比例无关。冰变形的统计特性是冰力学行为的标志。因此,目前的工作表明模型当前使用的机械框架是不合适的。基于弹性相互作用的不同建模框架可以改善冰变形统计和缩放属性的表示。

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