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首页> 外文期刊>Journal of Mechanical Science and Technology >A quality control method by ultrasonic vibration energy and diagnosis system at trimming process
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A quality control method by ultrasonic vibration energy and diagnosis system at trimming process

机译:修整过程中超声波振动能量的质量控制方法及诊断系统

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To investigate a relation between vortex clusters and large-scale structures in the outer layer of wall turbulence, direct numerical simulations of turbulent channel flows have been conducted up toRe τ = 1270. The vortex clusters in the outer layer consist coherent fine scale eddies (CFSEs) of which diameter and maximum azimuthal velocity are scaled by the Kolmogorov length and the Kolmogorov velocity. The CFSE clusters are inside the large-scale structure, which contributes to the streamwise velocity deficit The scale of those clusters tends to be enlarged with the increase of a distance from the wall. The CFSE clusters are composed of the relatively strong CFSEs, which play an important role in the production of the Reynolds shear stress and the dissipation rate of the turbulent kinetic energy. The most expected maximum azimuthal velocity of the CFSEs in these low-momentum regions of the outer layer is 30–70% fester compared with those of the CFSEs in unconditioned regions (i.e. all regions of the outer layer), while the most expected diameter of the CFSEs is not changed greatly.
机译:为了研究壁湍流外层中涡团与大型结构之间的关系,对湍流通道流动进行了直接数值模拟,直到Reτ =1270。外层中的涡团由相干精细构成。直径和最大方位角速度由Kolmogorov长度和Kolmogorov速度缩放的涡旋(CFSE)。 CFSE团簇位于大型结构内部,这导致了流向速度赤字。随着距墙的距离增加,这些团簇的规模趋于扩大。 CFSE团簇由相对较强的CFSE组成,它们在产生雷诺剪切应力和湍动能的耗散率方面起着重要作用。与无条件区域(即外层的所有区域)的CFSE相比,外层这些低动量区域中CFSE的最期望最大方位角速度为30–70%fester。 CFSE的变化不大。

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