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Topographically induced internal solitary waves in a pycnocline: Ultrasonic probes and stereo-correlation measurements

机译:碧萝oc在地形上引起的内部孤立波:超声探头和立体相关测量

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摘要

Internal solitary waves (ISWs) are large amplitude stable waves propagating in regions of high density gradients such as the ocean pycnocline. Their dynamics has often been investigated in two-dimensional approaches, however, their three-dimensional evolution is still poorly known. Experiments have been conducted in the large stratified water tank of CNRM-GAME to study the generation of ISWs in two academic configurations inspired by oceanic regimes. First, ultrasonic probes are used to measure the interfacial displacement in the two configurations. In the primary generation case for which the two layers are of constant density, the generation of ISWs is investigated in two series of experiments with varying amplitude and forcing frequency. In the secondary generation case for which the lower layer is stratified, the generation of ISWs from the impact of an internal wave beam on the pycnocline and their subsequent dynamics is studied. The dynamics of ISWs in these two regimes accords well with analytical approaches and numerical simulations performed in analogous configurations. Then, recent developments of a stereo correlation technique are used to describe the three-dimensional structure of propagating ISWs. In the primary generation configuration, small transverse effects are observed in the course of the ISW propagation. In the secondary generation configuration, larger transverse structures are observed in the interfacial waves dynamics. The interaction between interfacial troughs and internal waves propagating in the lower stratified layer are a possible cause for the generation of these structures. The magnitude of these transverse structures is quantified with a nondimensional parameter in the two configurations. They are twice as large in the secondary generation case as in the primary generation case.
机译:内部孤立波(ISW)是在高密度梯度区域(例如大洋比克林)中传播的大振幅稳定波。通常以二维方法研究它们的动力学,但是,它们的三维演化仍然知之甚少。在CNRM-GAME的大型分层水箱中进行了实验,研究了受海洋政权启发的两种学术结构中ISW的产生。首先,超声探头用于测量两种配置中的界面位移。在两层具有恒定密度的初生世代情况下,在两个振幅和强迫频率变化的实验系列中,对ISW的生成进行了研究。在下层被分层的第二代情况下,研究了由内部光束对比考克林的冲击及其后续动力学产生的ISW的过程。在这两种情况下,ISW的动力学与在类似配置下进行的分析方法和数值模拟非常吻合。然后,使用立体声相关技术的最新发展来描述传播ISW的三维结构。在初生构造中,在ISW传播过程中观察到较小的横向效应。在第二代构造中,在界面波动力学中观察到较大的横向结构。界面槽与在下部分层层中传播的内部波之间的相互作用是产生这些结构的可能原因。这些横向结构的大小在这两种配置中用无量纲参数来量化。在第二代情况下,它们的大小是第一代情况下的两倍。

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