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The transmission spectrum of sound through a phononic crystal subjected to liquid flow

机译:声波通过声子晶体在液体中的传播频谱

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The influence of liquid-flow up to 7 mm/s is examined on transmission spectra of phononic crystals, revealing a potential use for slow liquid-flow measurement techniques. It is known that transmission of ultrasound through a phononic crystal is determined by its periodicity and depends on the material characteristics of the crystal's constituents. Here, the crystal consists of metal rods with the space in between filled with water. Previous studies have assumed still water in the crystal, and here, we consider flowing liquid. First, the crystal bandgaps are investigated in still water, and the results of transmission experiments are compared with theoretical band structures obtained with the finite element method. Then, changes in transmission spectra are investigated for different speeds of liquid flow. Two situations are investigated: a crystal is placed with a principal symmetry axis in the flow direction (ΓX) and then at an angle (ΓM). The good stability of the bandgap structure of the transmission spectrum for both directions is observed, which may be of importance for the application of phononic crystals as acoustic filters in an environment of flowing liquid. Minor transmission amplitude changes on the other hand reveal a possibility for slow liquid flow measurements.
机译:考察了高达7 mm / s的液体流量对声子晶体透射光谱的影响,揭示了缓慢液体流量测量技术的潜在用途。众所周知,超声波通过声子晶体的传输是由其周期性决定的,并且取决于晶体成分的材料特性。在此,晶体由金属棒组成,金属棒之间的空间充满水。先前的研究假设晶体中仍然有水,在这里,我们考虑流动的液体。首先,研究了在静止水中的晶体带隙,并将透射实验的结果与通过有限元方法获得的理论带结构进行了比较。然后,针对不同的液体流速研究透射光谱的变化。研究了两种情况:以主对称轴沿流动方向(ΓX)放置晶体,然后以一定角度(ΓM)放置晶体。观察到在两个方向上的透射谱的带隙结构的良好稳定性,这对于在流动的液体环境中将声子晶体用作声滤波器来说可能是重要的。另一方面,较小的传输幅度变化则表明可能进行缓慢的液体流量测量。

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  • 来源
    《Applied Physics Letters》 |2018年第2期|024102.1-024102.4|共4页
  • 作者单位

    Georgia Institute of Technology, UMI Georgia Tech CNRS 2958, George W. Woodruff School of Mechanical Engineering, Georgia Tech Lorraine, Laboratory for Ultrasonic Nondestructive Evaluation "LUNE," 2 rue Marconi, 57070 Men, France;

    Georgia Institute of Technology, UMI Georgia Tech CNRS 2958, George W. Woodruff School of Mechanical Engineering, Georgia Tech Lorraine, Laboratory for Ultrasonic Nondestructive Evaluation "LUNE," 2 rue Marconi, 57070 Men, France;

    DTU Compute, Technical University of Denmark, Building 324,2800 Kongens Lyngby, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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