Low-frequency sound transmission through water-air interface: A comparison between Ray and wave theory

Yu Liu, Yong Wang
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引用次数: 3

Abstract

Studying low frequency sound transmission through water-air interface can help understand airplane-generated sound for acoustic remote sensing and effects of airborne sources on marine life. In this paper ray theory and wave theory are utilized to evaluate the acoustic transparency. Ray theory is first used to calculate the energy of the plane and spherical wave that transmits from water to air. Wave theory is then utilized to study spherical wave transmission through water-air interface. By comparing the results obtained from two theories, it is found that acoustic transparency can be derived using both ray and wave theory. Because acoustic transparency derived using ray theory is slightly smaller than that of the wave theory, it is thus called Enhanced Transparency as opposed to Anomalous Transparency proposed by Godin. By incorporating the inhomogeneous wave, wave theory does provide more significant transparency, especially in low frequencies. The results have been further extended to liquid-gas interface.
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通过水-空气界面的低频声传输:射线理论与波理论的比较
研究通过水气界面的低频声传输,有助于了解飞机产生的声音用于声学遥感以及机载源对海洋生物的影响。本文利用射线理论和波动理论对声透明度进行了评价。射线理论首先用于计算从水到空气传播的平面波和球面波的能量。然后利用波动理论研究了球面波在水气界面中的传播。通过比较两种理论的结果,发现可以用射线理论和波动理论推导声透明。由于利用射线理论推导出的声透明度比波理论推导出的声透明度略小,因此称为增强透明度,而不是戈丁提出的反常透明度。通过结合非均匀波,波动理论确实提供了更重要的透明度,特别是在低频。结果进一步推广到液气界面。
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