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首页> 外文期刊>Journal of Sound and Vibration >Whistling of a pipe system with multiple side branches: Comparison with corrugated pipes
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Whistling of a pipe system with multiple side branches: Comparison with corrugated pipes

机译:带有多个侧分支的管道系统的吹口哨:与波纹管的比较

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Corrugated pipes are widely used because they combine local rigidity with global flexibility. Whistling induced by flow through such pipes can lead to serious environmental and structural problems. The whistling of a multiple side branch system is compared to the whistling behavior of corrugated pipes. The study has been restricted to cavities with sharp edges which are convenient for theoretical modeling. The side branch depth is chosen to be equal to the side branch diameter, which corresponds to cavity geometries in typical corrugated pipes. The low frequency resonance modes of the multiple side branch system have been predicted by means of acoustic models, of which the validity has been tested experimentally. Several experiments have been carried out for characterizing the whistling behavior of the system. While the behavior of a multiple side branch system is interesting on its own it can be compared to that of corrugated pipes. These experiments show that the multiple side branch system is in many aspects a reasonable model for corrugated pipes. Advantage of the multiple side branch system is that it is an experimental setup allowing easy modification of cavity depth. We used this feature to identify the pressure nodes of the acoustic standing wave along the main pipe as the regions where sound is produced. This contradicts recent publications on corrugated pipes. Another interesting aspects is that the system appears to whistle at the second hydrodynamic mode of the cavities rather than at the first hydrodynamic mode. A prediction model for the whistling behavior is proposed, consisting of an energy balance, based on the vortex sound theory. The model predicts the observed Strouhal number but overestimates the acoustic fluctuation amplitude by a factor four.
机译:波纹管被广泛使用,因为它们结合了局部刚性和整体灵活性。流经此类管道引起的吹哨声会导致严重的环境和结构问题。将多侧分支系统的吹气与波纹管的吹气行为进行了比较。该研究仅限于具有锋利边缘的腔,这对于理论建模很方便。选择侧分支深度等于侧分支直径,该直径对应于典型波纹管中的模腔几何形状。已经通过声学模型预测了多边分支系统的低频共振模式,其有效性已经通过实验进行了测试。为了表征系统的啸叫行为已经进行了一些实验。尽管多分支机构的行为本身很有趣,但可以将其与波纹管的行为进行比较。这些实验表明,在许多方面,多分支机构是波纹管的合理模型。多侧分支系统的优势在于它是一种实验装置,可轻松修改型腔深度。我们使用此功能将沿主管道的声驻波的压力节点识别为产生声音的区域。这与最近关于波纹管的出版物相矛盾。另一个有趣的方面是,该系统似乎在型腔的第二流体动力模式下发出哨声,而不是在第一流体动力模式下发出哨声。基于涡流理论,提出了一种基于能量平衡的啸叫行为预测模型。该模型可以预测观察到的Strouhal数,但会高估声波起伏幅度四倍。

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