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Ice bridges and ridges in the Maxwell-EB sea ice rheology

机译:麦克斯韦-EB海冰流变学中的冰桥和山脊

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pstrongAbstract./strong This paper presents a first implementation of a new rheological model for sea ice on geophysical scales. This continuum model, called Maxwell elasto-brittle (Maxwell-EB), is based on a Maxwell constitutive law, a progressive damage mechanism that is coupled to both the elastic modulus and apparent viscosity of the ice cover and a Mohra??Coulomb damage criterion that allows for pure (uniaxial and biaxial) tensile strength. The model is tested on the basis of its capability to reproduce the complex mechanical and dynamical behaviour of sea ice drifting through a narrow passage. Idealized as well as realistic simulations of the flow of ice through Nares Strait are presented. These demonstrate that the model reproduces the formation of stable ice bridges as well as the stoppage of the flow, a phenomenon occurring within numerous channels of the Arctic. In agreement with observations, the model captures the propagation of damage along narrow arch-like kinematic features, the discontinuities in the velocity field across these features dividing the ice cover into floes, the strong spatial localization of the thickest, ridged ice, the presence of landfast ice in bays and fjords and the opening of polynyas downstream of the strait. The model represents various dynamical behaviours linked to an overall weakening of the ice cover and to the shorter lifespan of ice bridges, with implications in terms of increased ice export through narrow outflow pathways of the Arctic./p.
机译:> >摘要。本文介绍了地球物理尺度上海冰新流变模型的首次实现。这种称为麦克斯韦弹性脆性(Maxwell-EB)的连续模型基于麦克斯韦本构定律,一种渐进式破坏机制,该机制与冰盖的弹性模量和表观粘度以及Mohra ?? Coulomb破坏准则相结合可提供纯(单轴和双轴)拉伸强度。该模型是根据其再现狭窄通道中海冰漂移的复杂机械和动力学行为的能力进行测试的。介绍了通过Nares海峡进行的冰流的理想化和现实模拟。这些证明了该模型再现了稳定的冰桥的形成以及流动的停止,这种现象在北极的众多航道中都发生了。与观察结果一致,该模型捕获了沿狭窄拱形运动学特征的破坏传播,跨越这些特征的速度场的不连续性,将冰盖分为浮冰,最厚的脊冰的强空间局部性,在海湾和峡湾中陆冰,并在海峡下游开放波利亚尼。该模型代表了与整个冰盖减弱和冰桥寿命缩短有关的各种动力学行为,这暗示着通过狭窄的北极流出途径增加冰出口的可能性。

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