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Resonance and interactions of infragravity waves with sea ice

机译:海冰的Intravavity波的共鸣和交互

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Flexural-gravity waves propagating under continuous sea ice can potentially travel considerable distances with negligible reduction of their amplitude, particularly waves that have longer periods such as those in the IG (infragravity) band. This paper investigates resonance from that perspective, explicitly identifying where it might be influencing the formative composition and subsequent evolution of the flexural-gravity wave spectrum by moving energy to longer periods. Several possible manifestations of resonance are appraised, where the term is being applied loosely; some obvious and some less so. For example, the heaving, rolling and flexing of ice floes using NAVMI (nondimensionalized added virtual mass incremental) factors; the natural frequencies of finite sheets of fast ice constrained along some of their boundaries; the initiation and maintenance of trapped edge modes due to reflection at the shore followed by partial total internal reflection as the reflected waves venture out into deeper water again, with the attendant exiting leaky waves that are liberated as part of that process-each shaped by topographical subtleties of local terrain; and a proposition that ice sheets select a preferred frequency at which the wave moves at the same speed in ice as it does in open sea. A data set of observations from the Sea of Okhotsk that includes a broad span of IG waves is employed, as it is these flexural-gravity waves that have the greatest tenacity to propagate over vast distances. Because IG wave energy within the period range 15-70 s is a recurring feature of the measurements collected whilst the sea is ice-covered, this band is a primary focus of the paper. A conceptual model based upon the van der Pol oscillator is also briefly mentioned, to illustrate qualitatively how synchronization could act as a catalyst to some of the resonances that occur.
机译:在连续海冰下传​​播的弯曲重力波可以潜在地行使相当远的距离,其幅度可忽略不计,特别是具有较长周期的波,例如IG(IntraGravity)频带中的较长周期。本文调查了这种观点的共振,明确地识别它可能通过移动能量移动到更长的时间来影响形成性组合物和随后的弯曲 - 重力波谱的演变。评估了几种可能的共振表现,其中术语是松散的;一些明显,有些不太明显。例如,使用Navmi(非潜入的增加的虚拟质量增量)因子的冰浮翅弯曲,滚动和弯曲;沿着他们的一些界限的有限冰片的自然频率限制;由于岸边的反射而接下来的截图边缘模式的启动和维护,随后被反射波再次冒险进入更深的水中,随着泄漏的波,作为该过程的一部分,通过地形塑造了漏洞。地方地形的微妙之处;并且一个命题:冰盖选择一个优选的频率,在冰中在冰中以相同的速度移动时,在冰上的速度下方。采用包括宽跨度IG波的OKHotsk海洋的数据集,因为它是这些弯曲 - 重力波,其具有最大的韧性来传播距离远距离。因为在15-70秒内的时间范围内的IG波能量是收集的测量的重复特征,而在大海是冰盖的情况下,这支乐队是纸张的主要焦点。还简要介绍了一种基于范德波振荡器的概念模型,以说明定性如何使与发生的一些共振的同步充当催化剂。

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