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首页> 外文期刊>Journal of Glaciology >Stress balances of ice streams in a vertically integrated, higher-order formulation
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Stress balances of ice streams in a vertically integrated, higher-order formulation

机译:垂直整合的高阶公式中冰流的应力平衡

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摘要

One challenge in improving our understanding of ice-stream dynamics is to develop models of the spatial and temporal transition from ice-sheet to ice-stream flow. We address this with a new, vertically integrated, higher-order formulation for ice-sheet dynamics that captures the leading-order physics of low aspect ratio, viscous fluid flow, regardless of the amount of slip at the bed. The theory introduces a parameter, λ, which approximates the ratio of the basal stress to the shear stress scale, providing a measure of the relative importance of sliding and internal deformation. Our model is able to simultaneously describe the dynamics of both a slow-moving sheet and rapidly flowing ice streams. To test the formulation, we apply a triple-valued sliding law as the basal boundary condition and obtain numerical solutions that can be compared with previous work. We investigate the sensitivity of flow regimes and shear margin width to parameter variation, deriving a scaling for the latter. We also consider a double-valued sliding law, which enforces a constant, low basal stress beneath the ice stream. Comparisons of the resultant stress fields illustrate the different stress balances that can maintain ice-stream flow.
机译:增进我们对冰流动力学的理解的一项挑战是开发从冰盖流向冰流的时空转换模型。我们通过一种新的,垂直整合的,用于冰盖动力学的高阶公式来解决此问题,该公式捕获了低长宽比,粘性流体流动的领先物理原理,而与床面的滑移量无关。该理论引入了一个参数λ,该参数逼近了基础应力与剪切应力比例的比率,从而提供了滑动和内部变形的相对重要性的度量。我们的模型能够同时描述缓慢移动的冰流和快速流动的冰流的动力学。为了测试该公式,我们将三值滑动定律作为基础边界条件,并获得可以与以前的工作进行比较的数值解。我们研究了流态和剪切裕度宽度对参数变化的敏感性,得出了后者的缩放比例。我们还考虑了双值滑动定律,该定律在冰流下方施加恒定的低基础应力。所得应力场的比较说明了可以维持冰流流动的不同应力平衡。

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