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首页> 外文期刊>Ocean Engineering >Acoustic wave scattering from a rough seabed over a sediment layer with generalized-exponential density and inverse-square sound speed profiles
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Acoustic wave scattering from a rough seabed over a sediment layer with generalized-exponential density and inverse-square sound speed profiles

机译:来自粗糙海底的沉积物层上的声波散射,具有广义指数密度和平方反比的声速曲线

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摘要

This paper considers acoustic plane wave scattering from a rough seabed on a transition sediment layer overlying an elastic sea basement. The transition sediment layer is assumed to be fluid-like, with density and sound speed distributions behaving as generalized-exponential and inverse-square functions, respectively. This specific class of density and sound speed profiles deserves special attentions not only because it is geologically realistic, but also renders analytical solutions to the Helmholtz equation, making it particularly useful in the study of ocean and seabed acoustics. Based upon a boundary perturbation approach, the computational algorithm for the spatial spectrum in terms of the power spectral density of the scattered field has been developed and implemented. The results have shown that, while the coherent field mainly depends upon the gross structure of the seabed roughness, e.g., RMS roughness, the scattered field is significantly affected by the details of the roughness distributions specialized by the roughness power spectrum and the spatial correlation length of the rough surface. The dependence of the power spectral density of the scattered field on the various types of sediment stratifications, including the constant and the k~2-linear sound speed distributions, is also included in the analysis.
机译:本文考虑了在弹性海底之上的过渡沉积层上,从粗糙海床上的声平面波散射。假定过渡沉积层是流体状的,其密度和声速分布分别表现为广义指数函数和平方反函数。这种特定的密度和声速剖面类型不仅需要特别注意,因为它在地质上是现实的,而且为Helmholtz方程提供了解析解,这使其在研究海洋和海床声学方面特别有用。基于边界摄动方法,已经开发并实现了根据散射场的功率谱密度对空间谱进行计算的算法。结果表明,尽管相干场主要取决于海床粗糙度的总体结构,例如RMS粗糙度,但散射场却受到粗糙度功率谱和空间相关长度专门化的粗糙度分布细节的显着影响。粗糙的表面。分析中还包括了散射场的功率谱密度对各种类型的沉积物分层的依赖性,包括常数和k〜2线性声速分布。

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