方形封闭旁支管流致声共振实验研究

Experimental Study of Flow-induced Acoustic Resonance in Square Closed Side Branch

  • 摘要: 流致声共振是发生在特定结构中的流场与声场相互作用的现象。针对方形封闭旁支管结构的声共振特征开展实验,研究了主管道流速和旁支管长度对封闭旁支管声共振现象的影响,获得了声共振发生区域和压力脉动特征。实验研究的3种旁支管长度分别为L/d=5、6和7,实验的雷诺数Re=2.74×104~2.429×105,马赫数Ma=0.025~0.218。研究结果表明,声共振频率随流速的增加表现出频率锁定特征,随旁支管长度的增大,共振工况声压幅值降低,声共振频率降低。在本实验结构中,声共振现象发生在斯特鲁哈数为0.3~0.6和0.7~1.0的区域内。

     

    Abstract: Flow-induced acoustic resonance is a phenomenon caused by the interaction of flow and acoustic fields in special structure. Acoustic resonance characteristic experiments were carried out on square closed side branch. The influences of the velocity in main pipe and the length of the side branch on acoustic resonance were studied. The range of occurrence and characteristics of pressure pulsation were analyzed. Three lengths of side branches (L/d=5, 6 and 7) were experimentally studied and the Reynolds number in the experiment was 2.74×104-2.429×105 while the Mach number was 0.025-0.218. The results show that the resonance frequency shows a lock-in phenomenon with the increase of velocity. As the length of the side branch increasing, the amplitude of the acoustic pressure and the resonance frequency decrease. In the considered structure, the acoustic resonance occurs when Strouhal number is 0.3-0.6 and 0.7-1.0.

     

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