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首页> 外文期刊>Journal of Fluid Mechanics >ORTHONORMAL WAVELET DECOMPOSITION OF TURBULENT FLOWS - INTERMITTENCY AND COHERENT STRUCTURES
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ORTHONORMAL WAVELET DECOMPOSITION OF TURBULENT FLOWS - INTERMITTENCY AND COHERENT STRUCTURES

机译:湍流的正交小波分解-间歇和相干结构。

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Experimental data obtained in various turbulent flows are analysed by means of orthogonal wavelet transforms. Several configurations are analysed: homogeneous grid turbulence at low and very low Re-lambda, and fully developed jet turbulence at moderate and high Re-lambda. It is shown by means of the wavelet decomposition in combination with the form of scaling named extended self-similarity that some statistical properties of fully developed turbulence may be extended to low-Re-lambda flows. Indeed, universal properties related to intermittency are observed down to Re-lambda similar or equal to 10. Furthermore, the use of a new conditional averaging technique of velocity signals, based on the wavelet transform, permits the identification of the time signatures of coherent structures which may or may not be responsible for intermittency depending on the scale of the structure itself. It is shown that in grid turbulence, intermittency at the smallest scales is related to structures with small characteristic size and with a shape that may be related to the passage of vortex tubes. In jet turbulence, the longitudinal velocity component reveals that intermittency may be induced by structures with a size of the order of the integral length. This effect is interpreted as the signature of the characteristic jet mixing layer structures. The structures identified on the transverse velocity component of the jet case turn out on the other hand not to be affected by the mixing layer and the corresponding shape is again correlated with the signature of vortex tubes. [References: 42]
机译:利用正交小波变换分析了在各种湍流中获得的实验数据。分析了几种配置:在低和非常低的Re-lambda时,均相的格栅湍流;在中等和高的Re-lambda时,充分发展出的射流湍流。通过小波分解并结合称为扩展的自相似性的缩放形式,可以证明,完全发展的湍流的某些统计特性可以扩展到低Re-Lambda流。确实,与间歇性相关的通用属性直到Re-lambda都接近或等于10。此外,基于小波变换的速度信号新的条件平均技术的使用,可以识别相干结构的时标取决于结构本身的规模,它可能对间歇性负责,也可能不负责。结果表明,在网格湍流中,最小尺度上的间歇性与特征尺寸较小的结构有关,并且其形状可能与涡流管的通过有关。在射流湍流中,纵向速度分量表明,间歇性可能是由长度为整数长度的结构引起的。该效果被解释为特征性喷射混合层结构的特征。另一方面,在喷气壳体的横向速度分量上确定的结构不受混合层的影响,并且相应的形状再次与涡流管的特征相关。 [参考:42]

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