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Continuum-mechanical, Anisotropic Flow model for polar ice masses, based on an anisotropic Flow Enhancement factor

机译:基于各向异性流增强因子的极地冰块的连续力学各向异性流模型

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摘要

A complete theoretical presentation of the Continuum-mechanical, Anisotropic Flow model, based on an anisotropic Flow Enhancement factor (CAFFE model) is given. The CAFFE model is an application of the theory of mixtures with continuous diversity for the case of large polar ice masses in which induced anisotropy occurs. The anisotropic response of the polycrystalline ice is described by a generalization of Glen's flow law, based on a scalar anisotropic enhancement factor. The enhancement factor depends on the orientation mass density, which is closely related to the orientation distribution function and describes the distribution of grain orientations (fabric). Fabric evolution is governed by the orientation mass balance, which depends on four distinct effects, interpreted as local rigid body rotation, grain rotation, rotation recrystallization (polygonization) and grain boundary migration (migration recrystallization), respectively. It is proven that the flow law of the CAFFE model is truly anisotropic despite the collinearity between the stress deviator and stretching tensors.
机译:给出了基于各向异性流增强因子(CAFFE模型)的连续力学各向异性流模型的完整理论表示。 CAFFE模型是连续极化混合物理论在出现较大各向异性冰块的情况下的应用。基于标量各向异性增强因子,通过格伦流动定律的概括描述了多晶冰的各向异性响应。增强因子取决于取向质量密度,取向质量密度与取向分布函数密切相关,并描述了晶粒取向(织物)的分布。织物的演化受取向质量平衡控制,取向质量平衡取决于四个不同的影响,分别解释为局部刚体旋转,晶粒旋转,旋转重结晶(多边形)和晶界迁移(迁移重结晶)。事实证明,尽管应力偏移量和拉伸张量之间存在共线性,但CAFFE模型的流动定律确实是各向异性的。

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