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The effect of anomalous transparency of the water-air interface for a volumetric sound source

机译:水-空气界面的透明度异常对体积声源的影响

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Anomalous transparency consists in the passage at certain frequencies of the majority of a source's radiated energy through an interface, which usually gives strong reflection. Earlier, this effect was established for low-frequency point sources located in a fluid bounded by an air medium. In the case of volumetric sources, additional scattering of waves occurs between the interface of the media and the emitter surface; and the character of the manifestation of this effect is unclear. This work, using the solution to the integral equation corresponding to a boundary value problem, examines the emission of wave energy by spherical sources of different radius and its distribution between the energy flow passing through the water-air interface into the upper half-space and the energy flow going to infinity in the lower half-space. It has been established that the size of the source has virtually no effect on the energy distribution in the low-frequency range, i.e., on the anomalous transparency effect. We also analyze how the relative dimensions of spherical sources affect the energy characteristics in the mid- and high-frequency range.
机译:异常透明性在于源的大部分辐射能量在某些频率下通过界面通过,通常会产生强烈的反射。早先,这种效果是针对位于空气介质限制的流体中的低频点源建立的。在体积源的情况下,介质的界面和发射器表面之间会发生附加的波散射;并且这种作用的表现特征尚不清楚。这项工作使用对应于一个边值问题的积分方程的解,研究了不同半径的球形源发出的波能的发射及其在通过水-空气界面进入上半空间的能量流和能量流在下半空间达到无穷大。已经确定,源的尺寸实际上对低频范围内的能量分布没有影响,即对反常透明效应没有影响。我们还分析了球形源的相对尺寸如何影响中高频范围内的能量特性。

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