Wave-in-ice: theoretical bases and field observations.

Hayley H Shen
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引用次数: 12

Abstract

There has been a significant increase of studies on wave-ice interactions in the past decades. Through a close look at a representative set of theories, this paper investigates different physical processes that have produced different wave dispersion and attenuation. The existing theories have considered four major processes: scattering, flexural damping, viscoelastic damping and basal friction. Each theory looked into one of these processes and used a different mathematical formulation to model these processes. The low-frequency behaviours of the resulting spectral attenuation in these theories are fundamentally different from each other. Recent field observations have produced a large amount of data to calibrate and validate these theories. The uncertainties in using field measurements to determine attenuation due to ice covers are discussed. Both observational data and applications of these theories in field conditions suggest a multi-physics approach. A number of studies to further the theoretical development are recommended. It will take time for wave-in-ice models to reach the same level of performance as wave models for the open ocean, relying on the combined effort of theoretical, modelling and observational studies. This article is part of the theme issue 'Theory, modelling and observations of marginal ice zone dynamics: multidisciplinary perspectives and outlooks'.

冰中波:理论基础和实地观测。
在过去的几十年里,对波冰相互作用的研究有了显著的增加。通过对一组有代表性的理论的仔细考察,本文探讨了产生不同波色散和衰减的不同物理过程。现有的理论考虑了四个主要过程:散射、弯曲阻尼、粘弹性阻尼和基础摩擦。每种理论都着眼于其中一个过程,并使用不同的数学公式来模拟这些过程。在这些理论中,所产生的频谱衰减的低频行为是根本不同的。最近的实地观测产生了大量数据来校准和验证这些理论。讨论了使用现场测量来确定由冰盖引起的衰减的不确定性。观测数据和这些理论在野外条件下的应用都表明了一种多物理场方法。提出了一些进一步发展理论的研究。依靠理论、模型和观测研究的共同努力,冰中波浪模型需要时间才能达到与公海波浪模型相同的性能水平。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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