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Study on flow noise characteristics of Bionic cylinder based on acoustic analogy

机译:基于声学类比的仿生缸流量噪声特性研究

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The drag and noise reduction of the flow around a cylinder is one of the important topics in hydrodynamics and acoustics. In this paper, three typical bionic cylinders are designed based on the serrated structure on the surface of shark skin. Using Large eddy turbulence model and Lighthill’s acoustic analogy method, the flow noise characteristics of smooth cylinder and three kinds of bionic cylinders at different Reynolds numbers were compared, and the structure of cylinder surface was optimized. The results show that the main source of the flow noise around a cylinder is dipole noise, which is caused by the periodic fluctuating pressure on the cylinder surface.The bionic cylinder can reduce the amplitude of the fluctuating pressure, improve the wake flow field and reduce the wake vorticity, so as to reduce the noise. Among the three kinds of bionic cylinder, V-shaped bionic cylinder has the best noise reduction effect, and the critical value of S/H of V-shaped cylinder is about 2.5. When s / h > 2.5, V-shaped bionic cylinder has no effect of noise reduction.
机译:气缸周围的流动的阻力和降噪是流体动力学和声学中的重要主题之一。在本文中,基于鲨鱼皮表面的锯齿状结构设计了三个典型的仿生缸。使用大型涡流湍流模型和Lighthill的声学类比方法,比较了平稳圆筒的流量噪声特性和不同雷诺数的三种仿生缸,优化了圆柱面的结构。结果表明,气缸周围的流量噪声的主要来源是偶极噪声,这是由气缸表面上的周期性波动压力引起的。仿生缸可以降低波动压力的幅度,改善唤醒流场并减少唤醒涡度,从而减少噪音。在三种仿生缸中,V形仿生缸具有最佳的降噪效果,V形圆柱的S / H的临界值约为2.5。当S / H> 2.5时,V形仿生缸没有降噪效果。

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