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The general viscous relation for the response of ice and its implications in the reduced model for ice-sheet flow

机译:冰响应的一般粘性关系及其在冰盖流动简化模型中的意义

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Analyses of confined and unconfined compression combined with shear, and of biaxial stress laterally confined or unconfined, are presented for a general deviatoric viscous relation describing the response of an incompressible material. At present, numerical models for ice-sheet flow commonly adopt a very simple viscous law throughout the ice sheet, in which the deviatoric stress is coaxial with the strain rate, and the single response function depends on only one invariant, and is determined by single stress component tests which cannot verify the validity of the simplification. The analysis presented here is concerned with two-stress-component experimental configurations which could determine the general quadratic form of a viscous relation, with two response functions depending on two invariants. It is shown that the two combined compression and shear tests can also check the consistency of a viscous fluid assumption, but not so the biaxial stress tests. Each test allows a direct assessment of the significance of the quadratic term. It is then shown that a significant quadratic term changes the relative stress magnitudes in the commonly adopted reduced model for ice-sheet flow, and that the crucial simplifications are not achieved.
机译:针对描述了不可压缩材料响应的一般偏向粘性关系,提出了结合剪切作用的局限性和非局限性压缩分析,以及横向局限性或非局限性的双轴应力分析。目前,冰盖流动的数值模型通常在整个冰盖上采用非常简单的粘性定律,其中偏应力与应变率同轴,并且单个响应函数仅取决于一个不变性,并由单个确定。压力成分测试无法验证简化的有效性。此处介绍的分析涉及两个应力分量的实验配置,它们可以确定粘性关系的一般二次形式,其中两个响应函数取决于两个不变量。结果表明,两种组合的压缩和剪切试验也可以检查粘性流体假设的一致性,但不能进行双轴应力试验。每个测试都可以直接评估二次项的重要性。然后表明,一个重要的二次项会改变通常采用的冰盖流动折减模型中的相对应力大小,并且没有实现关键的简化。

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