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Numerical modelling of disintegration of basin-scale internal waves in a tank filled with stratified water

机译:分层水箱内盆规模内波解体的数值模拟

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We present the results of numerical experiments performed with the use of a fully non-linear non-hydrostatic numerical model to study the baroclinic response of a long narrow tank filled with stratified water to an initially tilted interface. Upon release, the system starts to oscillate with an eigen frequency corresponding to basin-scale baroclinic gravitational seiches. Field observations suggest that the disintegration of basin-scale internal waves into packets of solitary waves, shear instabilities, billows and spots of mixed water are important mechanisms for the transfer of energy within stratified lakes. Laboratory experiments performed by D. A. Horn, J. Imberger and G. N. Ivey (JFM, 2001) reproduced several regimes, which include damped linear waves and solitary waves. The generation of billows and shear instabilities induced by the basin-scale wave was, however, not sufficiently studied. The developed numerical model computes a variety of flows, which were not observed with the experimental set-up. In particular, the model results showed that under conditions of low dissipation, the regimes of billows and supercritical flows may transform into a solitary wave regime. The obtained results can help in the interpretation of numerous observations of mixing processes in real lakes.
机译:我们介绍了使用完全非线性的非静液压数值模型进行的数值实验的结果,以研究填充有分层水的长而狭窄的水箱对初始倾斜界面的斜斜响应。释放后,系统开始以对应于盆地尺度的斜压重力seiches的本征频率振荡。实地观测表明,盆地规模的内波分解为孤立波,剪切不稳定性,波涛和混合水斑点的分解是分层湖内能量转移的重要机制。 D. A. Horn,J。Imberger和G. N. Ivey(JFM,2001)进行的实验室实验重现了几种形式,包括阻尼线性波和孤立波。但是,对盆地尺度波浪引起的涛涛的产生和剪切不稳定性的研究还不够。所开发的数值模型可计算各种流量,而在实验设置中并未观察到。特别是,模型结果表明,在低耗散条件下,波涛和超临界流态可能转变为孤立波态。获得的结果可以帮助解释真实湖泊中混合过程的众多观测结果。

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