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Parametric subharmonic instability of internal waves: locally confined beams versus monochromatic wavetrains

机译:内部波的参数次谐波不稳定性:局部约束光束与单色波列

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Internal gravity wavetrains in continuously stratified fluids are generally unstable as a result of resonant triad interactions which, in the inviscid limit, amplify short-scale perturbations with frequency equal to one half of that of the underlying wave. This so-called parametric subharmonic instability (PSI) has been studied extensively for spatially and temporally monochromatic waves. Here, an asymptotic analysis of PSI for time-harmonic plane waves with locally confined spatial profile is made, in an effort to understand how such wave beams differ, in regard to PSI, from monochromatic plane waves. The discussion centres upon a system of coupled evolution equations that govern the interaction of a small-amplitude wave beam with short-scale subharmonic wavepackets in a nearly inviscid uniformly stratified Boussinesq fluid. For beams with general localized profile, it is found that triad interactions are not strong enough to bring about instability in the limited time that subharmonic perturbations overlap with the beam. On the other hand, for quasi-monochromatic wave beams whose profile comprises a sinusoidal carrier modulated by a locally confined envelope, PSI is possible if the beam is wide enough. In this instance, a stability criterion is proposed which, under given flow conditions, provides the minimum number of carrier wavelengths a beam of small amplitude must comprise for instability to arise.
机译:由于共振三重轴相互作用的结果,连续分层流体中的内部重力波列通常不稳定,这在无形的极限内会放大短尺度扰动,其频率等于下层波的频率的一半。对于空间和时间上的单色波,已经广泛研究了这种所谓的参数次谐波不稳定性(PSI)。在此,针对具有局部受限空间分布的时谐平面波,对PSI进行渐近分析,以了解此类光束在PSI方面与单色平面波有何不同。讨论的重点是耦合演化方程组,该方程组控制在几乎无粘性的均匀分层的Boussinesq流体中小振幅光束与短尺度次谐波波包的相互作用。对于具有一般局部轮廓的梁,发现三重轴相互作用不足以在次谐波扰动与梁重叠的有限时间内引起不稳定性。另一方面,对于其轮廓包括由局部约束包络调制的正弦载波的准单色光束,如果光束足够宽,则可以使用PSI。在这种情况下,提出了一种稳定性标准,该稳定性标准在给定的流动条件下,提供了一个最小振幅的小幅度光束必须包含的最小载流子波长,以产生不稳定性。

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