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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Improving the simulation of landfast ice by combining tensile strength and a parameterization for grounded ridges
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Improving the simulation of landfast ice by combining tensile strength and a parameterization for grounded ridges

机译:通过结合抗拉强度和接地脊的参数化来改善陆冰的模拟

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In some coastal regions of the Arctic Ocean, grounded ice ridges contribute to stabilizing and maintaining a landfast ice cover. Recently, a grounding scheme representing this effect on sea ice dynamics was introduced and tested in a viscous-plastic sea ice model. This grounding scheme, based on a basal stress parameterization, improves the simulation of landfast ice in many regions such as in the East Siberian Sea, the Laptev Sea, and along the coast of Alaska. Nevertheless, in some regions like the Kara Sea, the area of landfast ice is systematically underestimated. This indicates that another mechanism such as ice arching is at play for maintaining the ice cover fast. To address this problem, the combination of the basal stress parameterization and tensile strength is investigated using a 0.258 Pan-Arctic CICE-NEMO configuration. Both uniaxial and isotropic tensile strengths notably improve the simulation of landfast ice in the Kara Sea but also in the Laptev Sea. However, the simulated landfast ice season for the Kara Sea is too short compared to observations. This is especially obvious for the onset of the landfast ice season which systematically occurs later in the model and with a slower build up. This suggests that improvements to the sea ice thermodynamics could reduce these discrepancies with the data.
机译:在北冰洋的一些沿海地区,接地的冰脊有助于稳定和维持陆上的冰层。最近,介绍了一种代表这种对海冰动力学影响的接地方案,并在粘塑性海冰模型中对其进行了测试。这种基于基础应力参数化的接地方案可改善许多地区的陆地冰的模拟,例如东西伯利亚海,拉普捷夫海以及阿拉斯加海岸。然而,在卡拉海等一些地区,陆生冰的面积被系统地低估了。这表明诸如冰拱之类的另一种机制正在起作用以保持冰盖快速。为了解决这个问题,使用0.258 Pan-Arctic CICE-NEMO配置研究了基础应力参数化和拉伸强度的组合。单轴拉伸强度和各向同性拉伸强度都显着改善了卡拉海以及拉普捷夫海中陆冰的模拟。但是,与观测相比,模拟的喀拉海陆上冰冻季节太短了。这对于陆冰期的来临尤其明显,陆冰期在模型的后期系统性地发生,并且积累较慢。这表明对海冰热力学的改进可以减少这些数据差异。

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