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Vortex Shedding from Tube Banks with Closely Mounted Serrated Fin

机译:带有紧密安装的锯齿状鳍片的管束的涡流脱落

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This paper focuses on the vortex shedding from tube banks with closely mounted serrated fin. The tube banks were installed rigidly in the test section of a wind tunnel. We measured the mean velocity, the velocity fluctuation spectrum, and the gap velocity in the model tube banks that had the same pitch ratio as a boiler heat exchanger. We found two types of vortex shedding with different Strouhal numbers S_(t) of 0.40 and 0.20 in the case of Reynolds numbers R_(e) in the range 2.8 × 10~(4) to 6.2 × 10~(4). Strouhal numbers were calculated by using the measured values of the vortex shedding frequency, the gap velocity, and the equivalent diameter. The vortex shedding for S_(t) = 0.40 was mainly formed within the finned tube banks and the other vortex shedding for S_(t) = 0.20 was in the wake of the finned tube banks. The Strouhal number of the vortex shedding inside the finned tube banks changed from 0.40 to 0.32 for R_(e) = 6.2 × 10~(4). The applicability of the equivalent diameter, obtained from a single circular cylinder with a serrated fin, to the finned tube banks was examined. The calculated Strouhal number of 0.32 agreed with a Strouhal number of 0.30 obtained from Fitz-hugh’s map for bare-tube banks. The Strouhal number of 0.20 is similar to that for vortex shedding from a circular cylinder.
机译:本文着重讨论了带有紧密安装的锯齿状鳍片的管束的涡流脱落。管束被牢固地安装在风洞的测试区域中。我们测量了与锅炉热交换器具有相同螺距比的模型管束中的平均速度,速度波动谱和间隙速度。在雷诺数 R_(e)在2.8×10〜(4)至6.2×10〜范围内的情况下,我们发现两种类型的涡旋脱落,其斯特鲁哈尔数 S_(t)为0.40和0.20。 (4)。通过使用涡旋脱落频率,间隙速度和等效直径的测量值来计算斯托洛哈尔数。 S_(t)= 0.40的涡旋脱落主要在翅片管束内形成,而S_(t)= 0.20的另一涡旋脱落是在翅片管束之后。当R_(e)= 6.2×10〜(4)时,翅片管束内的涡旋脱落的斯特劳哈尔数从0.40变为0.32。检查了等效直径(从具有锯齿状鳍片的单个圆柱体中获得)对鳍片管束的适用性。计算得出的Strouhal数为0.32,与从Fitz-hugh的裸管库地图获得的Strouhal数为0.30一致。 Strouhal数为0.20类似于从圆柱体涡旋脱落的数值。

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