Modelling wave-ice interactions in three dimensions in the marginal ice zone.

Will Perrie, Michael H Meylan, Bechara Toulany, Michael P Casey
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引用次数: 10

Abstract

This study concerns wave-ice interactions in the marginal ice zone (MIZ). We compare idealized simulations using two recent three-dimensional formulations for wave-ice interactions for flexible ice floes, with selected parametrizations for the scattering of ocean surface waves due to individual ice floes. These parametrizations are implemented in a modern version of the wave model WAVEWATCH III® (hereafter, WW3) as source terms in the action balance equation. The comparisons consist of simple hypothetical experiments to identify characteristics of the wave-ice parametrizations. Comparisons show that the two new wave-ice formulations give attenuation of wave heights that can be less intense in the direction of propagation than those of other considered formulations. Within the wave energy spectrum, the one-dimensional attenuation extends over the entire frequency domain to the high-frequency limit. Within the MIZ beyond the ice edge, there is evidence for a 'roll-over' effect in the simulations of attenuation. These new formulations can potentially improve previous parametrizations in simulations of wave scattering and attenuation within the MIZ. This article is part of the theme issue 'Theory, modelling and observations of marginal ice zone dynamics: multidisciplinary perspectives and outlooks'.

边缘冰带波冰相互作用的三维模拟。
本研究涉及边缘冰带(MIZ)的波冰相互作用。我们比较了使用两种最近的柔性浮冰波冰相互作用的三维公式的理想模拟,以及由于单个浮冰引起的海洋表面波散射的选定参数。这些参数化在波浪模型WAVEWATCH III®(以下简称WW3)的现代版本中实现,作为作用平衡方程中的源项。比较包括简单的假设实验,以确定波冰参数化的特征。比较表明,两种新的波冰公式给出的波高衰减在传播方向上比其他考虑的公式要弱。在波能谱内,一维衰减在整个频域上延伸到高频极限。在冰边缘以外的MIZ内,有证据表明衰减模拟中存在“翻转”效应。这些新的公式可以潜在地改进以前的参数化模拟在MIZ内的波散射和衰减。本文是“边缘冰带动力学的理论、建模和观测:多学科观点和展望”主题问题的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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