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Development of turbulence in subsonic submerged jets

机译:亚音速潜水射流的湍流发展

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The development of turbulence in subsonic submerged jets is reviewed. It is shown that the turbulence results from a strong amplification of the weak input noise that is always present in the jet nozzle exit section. At a certain distance from the nozzle the amplification becomes essentially nonlinear. This amplified noise leads to a transition of the system to a qualitatively new state, which depends only slightly on the characteristics of the input noise, such as its power spectrum. Such a transition has much in common with nonequilibrium noise-induced phase transitions in nonlinear oscillators with multiplicative and additive noise. The Krylov-Bogolyubov method for spatially extended systems is used to trace the evolution of the power spectra, the root-mean-square amplitude of the turbulent pulsations, and the mean velocity, with increasing distance from the nozzle. It is shown that, as turbulence develops, its longitudinal and transverse scales increase. The results coincide qualitatively and also, in specific cases, quantitatively, with known experimental data. (C) 2004 Elsevier B.V. All rights reserved.
机译:综述了亚音速淹没式射流中湍流的发展。结果表明,湍流是由于始终存在于喷嘴出口部分中的弱输入噪声的强烈放大而产生的。在距喷嘴一定距离处,放大率基本上变为非线性。这种放大的噪声导致系统过渡到定性的新状态,该状态仅在很小程度上取决于输入噪声的特性(例如功率谱)。在具有乘法和累加噪声的非线性振荡器中,这种过渡与非平衡噪声引起的相变有很多共性。用于空间扩展系统的Krylov-Bogolyubov方法用于追踪功率谱的演变,湍流脉动的均方根振幅以及平均速度,以及与喷嘴之间距离的增加。结果表明,随着湍流的发展,其纵向和横向尺度增加。结果定性地吻合,在特定情况下还可以与已知实验数据定量地吻合。 (C)2004 Elsevier B.V.保留所有权利。

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