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Generation of internal solitary waves by frontally forced intrusions in geophysical flows

机译:由地球物理流中的强行侵入产生内部孤立波

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摘要

Internal solitary waves are hump-shaped, large-amplitude waves that are physically analogous to surface waves except that they propagate within the fluid, along density steps that typically characterize the layered vertical structure of lakes, oceans and the atmosphere. As do surface waves, internal solitary waves may overturn and break, and the process is thought to provide a globally significant source of turbulent mixing and energy dissipation. Although commonly observed in geophysical fluids, the origins of internal solitary waves remain unclear. Here we report a rarely observed natural case of the birth of internal solitary waves from a frontally forced interfacial gravity current intruding into a two-layer and vertically sheared background environment. The results of the analysis carried out suggest that fronts may represent additional and unexpected sources of internal solitary waves in regions of lakes, oceans and atmospheres that are dynamically similar to the situation examined here in the Saguenay Fjord, Canada.
机译:内部孤立波是驼峰形的大幅度波,物理上类似于表面波,除了它们在流体中沿密度阶梯传播外,通常代表湖泊,海洋和大气的分层垂直结构。与表面波一样,内部孤立波可能会翻转并破裂,并且该过程被认为是提供了全球范围内重要的湍流混合和能量耗散来源。尽管通常在地球物理流体中观察到,但是内部孤立波的起源仍然不清楚。在这里,我们报告了一个罕见的自然情况,即内部强孤立波的产生是由于前向界面重力流侵入两层垂直剪切的背景环境。进行的分析结果表明,前沿可能代表了湖泊,海洋和大气层区域中的内部孤立波的额外和意料不到的源,这些源与加拿大萨格奈峡湾所研究的情况动态相似。

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