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首页> 外文期刊>Physics of fluids >Topographically induced internal solitary waves in a pycnocline: Secondary generation and selection criteria
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Topographically induced internal solitary waves in a pycnocline: Secondary generation and selection criteria

机译:碧萝oc在地形上引起的内部孤立波:次生和选择标准

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Geophysical flows support the propagation of stable nonlinear internal waves (internal solitary waves or ISWs) with complex generation mechanisms. At least two regimes of ISWs generation in the pycnocline, both involving the interaction between a tidal flow and the bottom topography, are known in the ocean. They can either be directly induced above topographies (primary generation) or by a topographic internal wave beam impinging on the pycnocline. This "secondary generation" process is the subject-matter of the present study. The present work relies on direct numerical simulations of an academic configuration inspired by oceanic observations. It aims at describing the different steps involved in the secondary generation process. To mimic the oceanic case, the internal wave beam is emitted from the topography at the bottom of the flow. First, the linear scattering of the internal wave beam at the pycnocline is studied in a linear configuration. Increasing the forcing amplitude leads to the generation of steep isopycnal troughs in the pycnocline, at the locations of the internal wave beam impacts. The dynamics of these troughs is studied in details, which permits to associate them with propagating ISW2s that emerge from the second normal mode. Finally, the evolution of the structure of normal modes 2 and 3 with respect to the pycnocline strength, as well as the role played by the topography, is analyzed. This study is a step to complete and unify previous independent analytical studies of the secondary generation process.
机译:地球物理流通过复杂的生成机制支持稳定的非线性内部波(内部孤立波或ISW)的传播。在海洋中,至少已知有两种在比考克林中形成ISW的方式,都涉及潮汐流和海底地形之间的相互作用。它们既可以直接在地形上感应(初生),也可以通过撞击在比多可线上的地形内部波束来诱发。此“第二代”过程是本研究的主题。本工作依赖于受海洋观测启发的学术结构的直接数值模拟。它旨在描述二次发电过程中涉及的不同步骤。为了模拟海洋情况,内部光束从流底部的地形发出。首先,以线性结构研究内部光束在比多辛线上的线性散射。强迫振幅的增加会导致在内部波束撞击的位置,在比索克林中形成陡峭的等比波谷。对这些槽的动力学进行了详细研究,这使它们可以与从第二普通模式出现的传播ISW2相关联。最后,分析了正常模式2和3相对于比考克林强度的结构演变,以及地形起的作用。这项研究是完成和统一先前对次生过程的独立分析研究的一步。

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