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孤子内波环境下三维声传播建模 被引量:3

Modeling of three-dimensional sound propagation through solitary internal waves
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摘要 提出了一种适用于存在孤子内波水平变化波导的高效三维水下声场计算模型.该模型忽略反向散射,一般情况下由于孤子内波的反向散射非常弱,所以该模型能够提供精确的三维声场结果.同时,相对于双向三维耦合简正波模型,该模型在计算效率上能够至少提高一个数量级.除了孤子内波环境之外,本模型还适用于存在小尺度海脊等反向散射比较弱的一般水平变化波导环境.本文用该模型计算由KdV方程得到的孤子内波问题,并用双向三维耦合简正波模型作为标准模型来验证本模型的计算精度.计算结果表明本模型在反向散射比较弱的波导环境中具有非常高的计算精度. An accurate and numerically efficient numerical model is very important for studying the effect of internal wave on underwawter sound propagation. A full-wave, three-dimensional(3D) coupled-mode model is able to deal with the internal wave problem with satisfactory accuracy, but such a model is in general numerically inefficient. A numerically efficient 3D model is presented for sound propagation in a range-dependent waveguide in the presence of solitary internal waves in this work. The present model is a forward-marching model that neglects backscattering. In this 3D model, an efficient two-dimensional(2D) coupled-mode model, C-SNAP, is adopted to compute 2D acoustic field solutions excited by a line source. The C-SNAP is a 2D forward-marching model, which uses an energy-conserving matching condition to preserve accuracy. An appealing aspect of CSNAP is that its efficiency is competitive with that of the existing parabolic equation model. The integral transform technique is used to extend C-SNAP to a 3D model, where a complex integration contour is used for evaluating the wavenumber integral. A brief review of C-SNAP and formulation of the present 3D model are given. The forward-marching models are primarily suitable for treating the range-dependent problems with weak backscattering, such as with a slowly varying bathymetry. Since in general the backscattering from internal wave is weak, which is also validated numerically in this work, the present model is able to address the problem of sound propagation through internal wave with satisfactory accuracy. At the same time, it achieves an efficiency gain of at least an order of magnitude over that of full two-way, 3D model. In addition to the internal wave, the present model is also suitable for solving the general range-dependent problems where backscattering is weak, such as in the presence of a bottom ridge of a small height. Numerical simulations are also provided to validate the present model, where a two-way, 3D model serves as the benchmark. The numerical results show that the effect of the internal wave on the acoustic field is negligible for the region between the source and the internal wave. However, the effect is significant on the other side of the internal wave. A more interesting observation is the angular dependence of the interference pattern induced by the internal wave.
作者 张泽众 骆文于 庞哲 周益清 Zhang Ze-Zhong;Luo Wen-Yu;Pang Zhe;Zhou Yi-Qing(State Key Laboratory of Acoustics, Institute of Acoustics, Chinese Academy of Sciences, Beijing 100190, China;University of Chinese Academy of Sciences, Beijing 100049, China)
出处 《物理学报》 SCIE EI CAS CSCD 北大核心 2019年第20期155-162,共8页 Acta Physica Sinica
基金 国家自然科学基金(批准号:11774374)资助的课题~~
关键词 三维模型 孤子内波 耦合模式 three-dimensional modeling internal solitary wave coupled modes
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