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Three-dimensional coupled mode analysis of internal-wave acoustic ducts

机译:内波声导管的三维耦合模态分析

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摘要

A fully three-dimensional coupled mode approach is used in this paper to describe the physics of low frequency acoustic signals propagating through a train of internal waves at an arbitrary azimuth. A three layer model of the shallow water waveguide is employed for studying the properties of normal modes and their coupled interaction due to the presence of nonlinear internal waves. Using a robust wave number integration technique for Fourier transform computation and a direct global matrix approach, an accurate three-dimensional coupled mode full field solution is obtained for the tonal signal propagation through straight and parallel internal waves. This approach provides accurate results for arbitrary azimuth and includes the effects of backscattering. This enables one to provide an azimuthal analysis of acoustic propagation and separate the effects of mode coupled transparent resonance, horizontal reflection and refraction, the horizontal Lloyd’s mirror, horizontal ducting and anti-ducting, and horizontal tunneling and secondary ducting.
机译:本文采用全三维耦合模式方法来描述低频声学信号在任意方位上通过一系列内部波传播的物理特性。浅水波导的三层模型用于研究正常模式的性质以及由于存在非线性内波而产生的耦合相互作用。使用用于傅立叶变换计算的鲁棒波数积分技术和直接全局矩阵方法,可以获得用于通过直线和平行内部波传播的音调信号的精确三维耦合模式全场解。这种方法可为任意方位提供准确的结果,并包括反向散射的影响。这样一来,人们就可以对声传播进行方位角分析,并且可以将模式耦合的透明共振,水平反射和折射,水平劳埃德镜,水平管道和抗传导以及水平隧穿和次级管道​​的影响分开。

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