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The effect of sea-surface roughness on ambient noise vertical directionality in shallow water waveguide

机译:海面粗糙度对浅水波导环境噪声垂直方向性的影响

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The vertical directionality of wind-generated noise in the vertical direction is influenced by the sea state, which in turn is dependent on the acoustic source distribution associated with breaking surface waves and by the acoustic propagation environment. At present, many ocean ambient noise vertical directionality models are available, such as K/I model, CAREY model, CANARY model. And most ambient noise models treat the sea surface as a flat pressure-release boundary, and the effects of the sea surface and bottom roughness are not considered in these models. In shallow water, both the bottom and surface roughness (sea state) can be factors which influence the directionality of ambient noise. The aim of this paper is to assess the effect of sea surface roughness on the accuracy of the vertical directionality of noise. Simulations were performed using a normal-mode model RDM developed by Westwood, which can accurately evaluate the branch line integral by a number of separate modes. Both the "over head noise sources" contribution and the "distant noise sources" contribution can be computed by the model. The application of the RDM model results in a magnitude reduction in computation time compared with existing noise models. The surface scattering phenomenon was introduced by using modal attenuation coefficients based on the Kirchhoff approximation theory. Introducing the attenuation into the noise model caused by the rough surface, and influences of the surface roughness on the vertical directionality of the ambient noise is investigated. Several examples are given with respect to the environment, with different roughness surface and constant sound-speed in water. The results show that surface roughness can alter the noise power distribution in almost all grazing directions, especially for moderate and high grazing angles, because the higher order normal modes suffer more energy loss due to the surface roughness. The work reveals the importance of rough interface scattering in forecasting vertical directionality of ambient noise.
机译:垂直方向上的风产生噪声的垂直方向性受到海状态的影响,这又取决于与断裂表面波和由声学传播环境相关联的声源分布。目前,许多海洋环境噪声垂直方向性模型可用,例如K / I模型,凸轮模型,金丝雀模型。并且大多数环境噪声模型将海面视为平坦的压力释放边界,并且在这些模型中不考虑海面和底部粗糙度的效果。在浅水中,底部和表面粗糙度(海态)都可以是影响环境噪声方向性的因素。本文的目的是评估海面粗糙度对噪声垂直方向性的准确性的影响。使用Westwood开发的普通模式型号RDM进行仿真,这可以通过多个单独的模式准确地评估分支线。 “过度噪声源”贡献和“远处噪声源”贡献可以通过模型计算。与现有噪声模型相比,RDM模型的应用导致计算时间的幅度降低。利用基于基于Kirchhoff近似理论的模态衰减系数引入了表面散射现象。研究了衰减进入由粗糙表面引起的噪声模型,并研究了表面粗糙度对环境噪声垂直方向性的影响。关于环境给出了几个例子,具有不同的粗糙表面和水中恒定的声速。结果表明,表面粗糙度可以改变几乎所有放牧方向上的噪声功率分布,特别是对于中等和高牧角度,因为高阶正常模式由于表面粗糙度而遭受更多的能量损失。该工作揭示了粗糙界面散射在预测环境噪声垂直方向性方面的重要性。

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