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The investigation of the methods for predicting the sound field in a non-anechoic tank with elastic boundary

机译:具有弹性边界的非消声坦克声场预测方法的研究

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摘要

The non-anechoic tank with elastic boundary is a widely used experimental apparatus, and mastering the sound field characteristics is very important for acoustical testing. But the predicting methods still need to improve to ensure a better fit with sound field testing. Considering the enormous differences of the characteristic impedance between air and water, the analytical model of a non-anechoic tank with elastic boundary in previous works was always based on the absolute soft approximation to simulate the boundary of the sound field. However, the boundary effects on the sound field which are caused either by the absolute soft or the elastic are very different, and that may be the real reason why there are obvious differences between analytical calculations and experimental results. Because of the complex coupling mechanism among boundary, sound field and sound source, the numerical methods relevant to analysis of sound field in a tank are somewhat limited. In order accurately to forecast the sound field in a non-anechoic water tank with elastic boundary, both the analytical method and numerical analysis method are established in this study. The analytical method is based on normal-wave theory, in which the general velocity potential function is constructed by considering the boundary influence. The numerical method is based on finite element theory, in which the acoustics finite element software Actran is used for computing, and the convergence validity of the numerical method is verified by the established analytical method. Differences between the effects to the sound field caused by the absolute soft boundary and the elastic boundary are further analyzed. Finally, verification tests are carried out in a glass tank. By comparing the normalized amplitude of sound pressure, we found that the calculation and experimental results matches well, especially in the low frequency range.
机译:具有弹性边界的非消声箱是一种广泛使用的实验设备,掌握声场特性对于声学测试非常重要。但是,仍然需要改进预测方法,以确保更好地适合声场测试。考虑到空气和水之间的特征阻抗存在巨大差异,以前工作中具有弹性边界的非消声水箱的分析模型始终基于绝对软逼近来模拟声场边界。然而,由绝对柔和或弹性引起的对声场的边界效应是非常不同的,这可能是解析计算与实验结果之间存在明显差异的真正原因。由于边界,声场和声源之间复杂的耦合机制,与罐内声场分析有关的数值方法受到一定限制。为了准确地预测具有弹性边界的非消声水箱的声场,建立了分析方法和数值分析方法。该分析方法基于正弦波理论,其中通过考虑边界影响来构造一般速度势函数。该数值方法基于有限元理论,其中使用声学有限元软件Actran进行计算,并通过所建立的解析方法验证了数值方法的收敛性。进一步分析了绝对软边界和弹性边界对声场的影响之间的差异。最后,在玻璃罐中进行验证测试。通过比较归一化的声压振幅,我们发现计算结果和实验结果吻合得很好,尤其是在低频范围内。

著录项

  • 来源
  • 会议地点 Harbin(CN)
  • 作者单位

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

    Acoustic science and technology laboratory, College of underwater acoustic engineering, Harbin engineering university, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Glass;

    机译:玻璃;

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