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首页> 外文期刊>Chinese journal of mechanical engineering >Investigation of dominant frequencies in transition Reynolds number range of flow around a circular cylinder Part I: Experimental study of the relation between vortex shedding and transition frequencies
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Investigation of dominant frequencies in transition Reynolds number range of flow around a circular cylinder Part I: Experimental study of the relation between vortex shedding and transition frequencies

机译:过渡过程中主导频率的研究圆柱绕流的雷诺数范围第一部分:涡旋脱落与过渡频率之间关系的实验研究

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摘要

A comprehensive hot wire investigation of the flow around a circular cylinder is carried out in an 18 " X 18" wind tunnel to look into the dominant frequencies at the stagnation, separation and separated shear layers in the transition Reynolds number range. The majority of the experiments are carried out at Reynolds number of 4.5 X 10~4, with additional transition frequency tests at Reynolds numbers of 2.9 X 10~4, 3.3 X 10~4 and 9.7 X 10~4 respectively. The results are analysed in terms of power spectral density. While the frequency associated with stagnation is found to be essentially due to vortex shedding, frequency doubling of vortex shedding is also evident in the separated shear layers. Two peaks associated with transition frequencies are detected and their possible implications are presented.
机译:在18“ X 18”风洞中对圆柱体周围的流动进行了全面的热线研究,以研究过渡雷诺数范围内的停滞,分离和剪切层的主频。大多数实验是在雷诺数为4.5 X 10〜4的条件下进行的,另外的跃迁频率测试分别在雷诺数为2.9 X 10〜4、3.3 X 10〜4和9.7 X 10〜4的条件下进行。根据功率谱密度分析结果。尽管发现与停滞有关的频率主要是由于涡旋脱落,但在分离的剪切层中,涡旋脱落的频率也倍增。检测到两个与跃迁频率相关的峰,并介绍了它们的可能含义。

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