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Evanescent acoustic waves: Production and scattering by resonant targets.

机译:van逝声波:共振目标的产生和散射。

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摘要

Small targets with acoustic resonances which may be excited by incident acoustic planewaves are shown to possess high-Q modes ("organ-pipe" modes) which may be suitable for ocean-based calibration and ranging purposes. The modes are modeled using a double point-source model; this, along with acoustic reciprocity and inversion symmetry, is shown to adequately model the backscattering form functions of the modes at low frequencies. The backscattering form-functions are extended to apply to any bistatic acoustic experiment using the targets when the target response is dominated by the modes in question.;An interface between two fluids which each approximate an unbounded half-space has been produced in the laboratory. The fluids have different sound speeds. When sound is incident on this interface at beyond the critical angle from within the first fluid, the second fluid is made to evince a region dominated by evanescent acoustic energy. Such a system is shown to be an possible laboratory-based proxy for a flat sediment bottom in the ocean, or sloped (unrippled) bottom in littoral environments.;The evanescent sound field is characterized and shown to have complicated features despite the simplicity of its production. Notable among these features is the presence of dips in the soundfield amplitude, or "quasi-nulls". These are proposed to be extremely important when considering the return from ocean-based experiments. The soundfield features are also shown to be accurately predicted and characterized by wavenumber-integration software. The targets which exhibit organ-pipe modes in the free-field are shown to also be excited by the evanescent waves, and may be used as soundfield probes when the target returns are well characterized. Alternately, if the soundfield is well-known, the target parameters may be extracted from back- or bistatic-scattering experiments in evanescent fields. It is shown that the spatial decay rate as measured by a probe directly in the evanescent field is half that as measured by backscattering experiments on horizontal and vertical cylinders driven at the fundamental mode, and it is demonstrated that this is explained by the principle of acoustic reciprocity.
机译:示出了可以被入射声平面波激发的,具有声共振的小目标具有高Q模式(“器官管”模式),该模式适合于基于海洋的校准和测距目的。使用双点源模型对模式进行建模。这与声学互易性和反演对称性一起显示出可以对低频模式的反向散射形式函数进行充分建模。当目标响应受所讨论的模式支配时,反向散射形式函数可扩展到适用于使用目标的任何双基地声学实验。实验室中已经产生了两种流体之间的界面,每种流体近似为无界半空间。流体的声速不同。当声音从第一流体中以超过临界角的角度入射到该界面上时,使第二流体出现由van逝声能主导的区域。该系统被证明是海洋中平坦的沉积物底部或沿海环境中倾斜的(未波纹状)底部的可能的基于实验室的替代物; van逝声场的特征在于,尽管其简单性也显示出复杂的特征生产。在这些功能中,值得注意的是声场振幅或“准零点”的下降。考虑到海洋实验的回报,这些建议极其重要。声场特征还显示出可以通过波数积分软件准确预测和表征。在自由场中表现出器官导管模式的目标也被by逝波激发,当目标返回得到很好表征时,可以用作声场探针。或者,如果声场是众所周知的,则可以从e逝场中的后向散射或双基地散射实验中提取目标参数。结果表明,由探头直接在directly逝场中测量的空间衰减率是在基本模式下驱动的水平和垂直圆柱体的反向散射实验所测量的空间衰减率的一半,并且证明了这是由声学原理解释的。互惠。

著录项

  • 作者

    Osterhoudt, Curtis F.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 282 p.
  • 总页数 282
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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