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Stress and deformation characteristics of sea ice in a high-resolution anisotropic sea ice model

机译:高分辨率各向异性海冰模型中海冰的应力和变形特征

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摘要

The drift and deformation of sea ice floating on the polar oceans is caused by the applied wind and ocean currents. Over ocean basin length scales the internal stresses and boundary conditions of the sea ice pack result in observable deformation patterns. Cracks and leads can be observed in satellite images and within the velocity fields generated from floe tracking. In a climate sea ice model the deformation of sea ice over ocean basin length scales is modelled using a rheology that represents the relationship between stresses and deformation within the sea ice cover. Here we investigate the link between emergent deformation characteristics and the underlying internal sea ice stresses using the Los Alamos numerical sea ice climate model. We have developed an idealized square domain, focusing on the role of sea ice rheologies in producing deformation at spatial resolutions of up to 500 m. We use the elastic anisotropic plastic (EAP) and elastic viscous plastic (EVP) rheologies, comparing their stability, with the EAP rheology producing sharper deformation features than EVP at all space and time resolutions. Sea ice within the domain is forced by idealized winds, allowing for the emergence of five distinct deformation types. Two for a low confinement ratio: convergent and expansive stresses. Two about a critical confinement ratio: isotropic and anisotropic conditions. One for a high confinement ratio and isotropic sea ice. Using the EAP rheology and through the modification of initial conditions and forcing, we show the emergence of the power law of strain rate, in accordance with observations.This article is part of the theme issue ‘Modelling of sea-ice phenomena’.
机译:极地海洋上漂浮的海冰的漂移和变形是由施加的风和洋流引起的。在整个海盆长度尺度上,海冰袋的内部应力和边界条件导致可观察到的变形模式。可以在卫星图像中以及在絮凝跟踪产生的速度场内观察到裂缝和引线。在气候海冰模型中,使用流变学对海盆在整个海盆长度尺度上的变形进行建模,该流变学代表了海冰覆盖层内应力与变形之间的关系。在这里,我们使用Los Alamos数值海冰气候模型研究涌现的变形特征与潜在的内部海冰应力之间的联系。我们已经开发出理想的正方形区域,重点关注海冰流变学在高达500 resolutionm的空间分辨率下产生变形中的作用。我们使用弹性各向异性塑料(EAP)和弹性粘性塑料(EVP)流变,比较它们的稳定性,并且在所有空间和时间分辨率下,EAP流变产生的变形特征都比EVP更尖锐。理想区域内的风迫使海域内的海冰融化,从而出现了五种不同的变形类型。对于低约束比率,有两个:收敛应力和膨胀应力。两个关于临界约束比的条件:各向同性和各向异性条件。一种用于高封闭比和各向同性的海冰。根据观察结果,利用EAP流变学,通过修改初始条件和强迫,我们证明了应变率幂律的出现。本文是主题“海冰现象建模”的一部分。

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