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A simple acoustic model to characterize the internal low frequency sound field in centrifugal pumps

机译:用于表征离心泵内部低频声场的简单声学模型

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摘要

Conventional centrifugal pumps with volute casing generate fluid-dynamic noise particularly at the so-called blade-passing frequency, which is attributed to the interaction of the flow exiting the pump impeller with the volute tongue. Following previous work by the authors to characterize the effect of that blade-tongue interaction on the tonal sound produced, this paper presents a simple acoustic model for centrifugal pumps that considers ideal sound sources of arbitrary position and properties. The model is to be implemented in a software code that applies it systematically to a pump previously tested at laboratory, until identifying the set of ideal sources that best reproduce the pressure fluctuation measurements. In this model, the ideal sources are assumed to radiate plane sound waves along the impeller channels, volute, and outlet diffuser. The volute was considered to be composed by a succession of slices, each of them equivalent to a linear 3-port acoustic system with individual sound transmission and reflection coefficients. A series of tests was conducted to check the validity of the acoustic model, by applying an external acoustic load onto the pump outlet duct and measuring the noise reflected. The resulting reflection coefficient was in good agreement with the predictions of the acoustic model. Finally, the model was used to investigate the pump internal sound field at the blade-passing frequency when operating at 70% of nominal flow rate. It was concluded that the sound field can be characterized reasonably by a dipole-like source located at the tongue region.
机译:具有蜗壳的常规离心泵尤其在所谓的叶片通过频率处产生流体动力噪声,这归因于离开泵叶轮的流与蜗壳舌的相互作用。根据作者先前的工作来表征叶片-舌簧相互作用对产生的音调的影响,本文提出了一种离心泵的简单声学模型,其中考虑了任意位置和属性的理想声源。该模型将以软件代码实施,该软件代码会将其系统地应用于先前在实验室测试过的泵,直到确定出最能再现压力波动测量值的理想源。在此模型中,假定理想的源沿着叶轮通道,蜗壳和出口扩散器辐射平面声波。蜗壳被认为是由一连串的薄片组成的,每个薄片相当于一个具有独立声音传输和反射系数的线性三端口声学系统。通过在泵的出口管道上施加外部声学负载并测量反射的噪声,进行了一系列测试以检验声学模型的有效性。所得的反射系数与声学模型的预测非常吻合。最后,当以标称流量的70%运行时,该模型用于研究泵通过叶片频率时的内部声场。结论是,声场可以通过位于舌头区域的偶极子状声源来合理地表征。

著录项

  • 来源
    《Applied Acoustics》 |2011年第1期|p.59-64|共6页
  • 作者单位

    Departamento de Energia, Universidad de Oviedo, Campus de Viesques s, 33271 Cijon, Asturias, Spain;

    Departamento de Energia, Universidad de Oviedo, Campus de Viesques s, 33271 Cijon, Asturias, Spain;

    Departamento de Energia, Universidad de Oviedo, Campus de Viesques s, 33271 Cijon, Asturias, Spain;

    Departamento de Energia, Universidad de Oviedo, Campus de Viesques s, 33271 Cijon, Asturias, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    centrifugal pump; sound propagation; blade-passing frequency; reflection coefficient;

    机译:离心泵;声音传播;叶片通过频率;反射系数;

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