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边缘冰区海冰流变学中的颗粒效应。

Granular effects in sea ice rheology in the marginal ice zone.

作者信息

Herman A

机构信息

Institute of Oceanography, University of Gdańsk, Gdańsk, Poland.

出版信息

Philos Trans A Math Phys Eng Sci. 2022 Oct 31;380(2235):20210260. doi: 10.1098/rsta.2021.0260. Epub 2022 Sep 12.

Abstract

Sea ice in the marginal ice zone (MIZ) consists of relatively small floes with a wide size span. In response to oceanic and atmospheric forcing, it behaves as an approximately two-dimensional, highly polydisperse granular material. The established viscous-plastic rheologies used in continuum sea ice models are not suitable for the MIZ; the collisional rheology, in which sea ice is treated as a granular gas, captures only one aspect of the granular behaviour, typical for a narrow range of conditions when dynamics is dominated by binary floe collisions. This paper reviews rheology models and concepts from research on granular materials relevant for MIZ dynamics (average stress as a result of 'microscopic' interactions of grains; [Formula: see text] and collisional rheologies). Idealized discrete-element simulations are used to illustrate granular effects and strong influence of the floe size distribution on strain-stress relationships in sheared sea ice, demonstrating the need for an MIZ rheology model capturing the whole range of 'regimes', from quasi-static/dense flow in the inner MIZ to the inertial flow in the outer MIZ. This article is part of the theme issue 'Theory, modelling and observations of marginal ice zone dynamics: multidisciplinary perspectives and outlooks'.

摘要

边缘冰区(MIZ)的海冰由尺寸跨度较大的相对较小的浮冰组成。响应海洋和大气强迫作用,它表现为一种近似二维的、高度多分散的颗粒材料。连续体海冰模型中使用的既定粘塑性流变学不适用于边缘冰区;碰撞流变学将海冰视为颗粒气体,仅捕捉了颗粒行为的一个方面,这在动力学由二元浮冰碰撞主导的狭窄条件范围内较为典型。本文回顾了与边缘冰区动力学相关的颗粒材料研究中的流变学模型和概念(颗粒“微观”相互作用产生的平均应力;[公式:见原文]和碰撞流变学)。理想化离散元模拟用于说明颗粒效应以及浮冰尺寸分布对剪切海冰应变 - 应力关系的强烈影响,表明需要一个能涵盖从边缘冰区内准静态/密集流到边缘冰区外惯性流等整个“状态”范围的边缘冰区流变学模型。本文是主题为“边缘冰区动力学的理论、建模与观测:多学科视角与展望”的一部分。

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