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边缘冰区的颗粒流

Granular flow in the marginal ice zone.

作者信息

Feltham Daniel L

机构信息

Department of Space and Climate Physics, Centre for Polar Observation and Modelling, University College London, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2005 Jul 15;363(1832):1677-700. doi: 10.1098/rsta.2005.1601.

Abstract

The region of sea ice near the edge of the sea ice pack is known as the marginal ice zone (MIZ), and its dynamics are complicated by ocean wave interaction with the ice cover, strong gradients in the atmosphere and ocean and variations in sea ice rheology. This paper focuses on the role of sea ice rheology in determining the dynamics of the MIZ. Here, sea ice is treated as a granular material with a composite rheology describing collisional ice floe interaction and plastic interaction. The collisional component of sea ice rheology depends upon the granular temperature, a measure of the kinetic energy of flow fluctuations. A simplified model of the MIZ is introduced consisting of the along and across momentum balance of the sea ice and the balance equation of fluctuation kinetic energy. The steady solution of these equations is found to leading order using elementary methods. This reveals a concentrated region of rapid ice flow parallel to the ice edge, which is in accordance with field observations, and previously called the ice jet. Previous explanations of the ice jet relied upon the existence of ocean currents beneath the ice cover. We show that an ice jet results as a natural consequence of the granular nature of sea ice.

摘要

海冰密集区边缘附近的海冰区域被称为边缘冰区(MIZ),其动力学受到海浪与冰盖相互作用、大气和海洋中的强梯度以及海冰流变学变化的影响而变得复杂。本文重点研究海冰流变学在确定边缘冰区动力学中的作用。在这里,海冰被视为一种具有复合流变学的颗粒材料,该复合流变学描述了碰撞浮冰相互作用和塑性相互作用。海冰流变学的碰撞部分取决于颗粒温度,颗粒温度是流动波动动能的一种度量。引入了一个简化的边缘冰区模型,该模型由海冰的纵向和横向动量平衡以及波动动能平衡方程组成。使用基本方法找到了这些方程的稳态解,并得到了主导阶数。这揭示了一个与冰缘平行的快速冰流集中区域,这与实地观测结果一致,该区域之前被称为冰流。之前对冰流的解释依赖于冰盖下洋流的存在。我们表明,冰流是海冰颗粒性质的自然结果。

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