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Modeling and experiments with low-frequency pressure wave propagation in liquid-filled, flexible tubes

机译:液体填充柔性管中低频压力波传播的建模和实验

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摘要

A model for wave propagation in a liquid-filled viscoelastic tube with arrays of receivers inside, is being used to analyze the influence of noise generated by in-line vibrational noise sources. In this model, distensibility is of greater importance than compressibility of the liquid. The dispersion and attenuation is shown to be strongly dependent on the viscoelastic properties of the tube wall. The complex, frequency-dependent moduli of relevant tube materials have been measured in stress wave transfer function experiments. The moduli are used in the model to produce realistic dispersion relations and frequency-dependent attenuation. A 12-m-long, liquid-filled tube with interior stress members and connectors in each end is hanging vertically from an upper fixture. The lower end connector is excited by a power vibrator to generate the relevant wave modes. Measurements with reference accelerometers and arrays of hydrophones inside are compared to the theoretical model for wave propagation. A good agreement between experimental data and theoretical predictions is found.
机译:在内部装有接收器阵列的充满液体的粘弹性管中的波传播模型,正用于分析在线振动噪声源产生的噪声的影响。在该模型中,可膨胀性比液体的可压缩性更重要。色散和衰减显示出强烈依赖于管壁的粘弹性。在应力波传递函数实验中已经测量了相关管材料的复杂的,随频率变化的模量。在模型中使用模来产生实际的色散关系和与频率有关的衰减。一根12米长的充满液体的管子,其两端均带有内部应力构件和连接器,从上部固定装置垂直悬挂。下端连接器由动力振动器激励以产生相关的波模。将参考加速度计和内部水听器阵列的测量结果与波传播的理论模型进行比较。实验数据和理论预测之间找到了很好的一致性。

著录项

  • 作者

    Bjelland C; Bjarnø Leif;

  • 作者单位
  • 年度 1992
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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