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Numerical study of internal wave-caustic and internal wave-shear interactions in a stratified fluid

机译:层状流体中内波-内波和内波-切变相互作用的数值研究

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The behaviour of internal waves at a caustic level, turning point and critical layer have been investigated numerically. At a caustic reflection, a triad interaction was formed within the reflection region and the internal wave energy was transferred to lower frequencies (subharmonics). This resulted in a local subharmonic instability. One of the excited internal waves penetrated the caustic level and propagated downwards. This downward propagating wave then produced a second caustic where further reflection could take place. At a turning point, nonlinear interaction between the incident and reflected waves transferred energy to higher frequencies (evanescent trapped waves) which resulted in a superharmonic instability. At the critical level, energy was transferred to the mean flow. As the degree of nonlinearity increased, more energy was found to be transferred and overturning resulted due to a shear instability. [References: 38]
机译:数值研究了内部波在苛性水平,转折点和临界层的行为。在苛性反射下,三反射相互作用在反射区域内形成,内部波能量转移到较低的频率(次谐波)。这导致局部亚谐波不稳定。激发的内部波之一穿透苛性碱层并向下传播。然后,该向下传播的波产生了第二个苛性碱,在那里可能会发生进一步的反射。在一个转折点,入射波和反射波之间的非线性相互作用将能量转移到更高的频率(e逝陷波),这导致了超谐波不稳定。在临界水平,能量转移到平均流量。随着非线性度的增加,发现更多的能量被转移,并且由于剪切不稳定性而导致倾覆。 [参考:38]

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