首页> 外文期刊>Izvestiya Atmospheric and Oceanic Physics >Nonstationary Dynamics of Turbulent Axisymmetric Jets in a Stratified Fluid: Part 2. Mechanism of Excitation of Axisymmetric Oscillations in a Submerged Jet
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Nonstationary Dynamics of Turbulent Axisymmetric Jets in a Stratified Fluid: Part 2. Mechanism of Excitation of Axisymmetric Oscillations in a Submerged Jet

机译:分层流体中湍流轴对称射流的非平稳动力学:第2部分。浸没式射流中轴对称振荡的激发机理

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It was shown based on laboratory experiments in a Large Thermally Stratified Tank (LTST) at the Institute of Applied Physics of the Russian Academy of Sciences that a turbulent axisymmetric jet in a stratified fluid with a sharp density drop (a pycnocline) intensively generates internal waves. An axisymmetric oscillation mode, for which a sufficient condition of stability in the parallel flow approximation is met, served as their source. This paper studies the stability of a nonparallel flow (with self-similar velocity profiles) that simulates a jet flow in the lower part of the pycnocline with respect to the axisymmetric mode. The estimates of the axisymmetric mode near the pycnocline are in agreement with the experimental data. The signs of the self-oscillating mode of the jet were experimentally revealed and the possibility of self-oscillations was theoretically proved: it was shown that the flow in the pycnocline vicinity is absolutely unstable.
机译:根据俄罗斯科学院应用物理研究所的大型热分层储罐(LTST)的实验室实验表明,分层流体中的湍流轴对称射流具有急剧的密度下降(比诺可林),会强烈产生内部波。作为轴对称振荡模式的源,对于该轴对称振荡模式,满足了平行流近似中的充分稳定性条件。本文研究了非平行流(具有自相似速度分布)的稳定性,该稳定性模拟了比克ococline下部相对于轴对称模式的射流。比诺可林附近的轴对称模式的估计与实验数据一致。通过实验揭示了射流自激振荡的迹象,并从理论上证明了自激振荡的可能性:表明了在比可可啉附近的流动是绝对不稳定的。

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