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首页> 外文期刊>The Journal of the Acoustical Society of America >A full-field perturbation approach to scattering and reverberation in range-dependent environments with rough interfaces
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A full-field perturbation approach to scattering and reverberation in range-dependent environments with rough interfaces

机译:具有粗糙接口的范围依赖环境中散射和混响的全场扰动方法

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A perturbation approach to roughness scattering and reverberation in range-dependent environments is developed treating each interface as a superposition of a smooth reference interface, which may include large-scale deterministic features (such as bathymetry changes), and small compared to the acoustic wavelength vertical deviations from this interface that are considered as random roughness perturbations. The reference interface is assumed to be smooth enough to allow analytic or numerical solution for the field in the vicinity of this interface that can then be used in perturbation theory. Expressions for both the reverberation field and average reverberation intensity in a general case of an arbitrary number of rough interfaces are obtained in a form convenient for numerical simulations. In the case of long-range ocean reverberation, several approximations for these expressions are developed, relevant to various environmental scenarios and different types of interfaces: sea-surface, water-sediment interface, buried sediment interfaces, and bottom basement. The results are presented in a simple form and provide a direct relationship of the reverberation intensity with three critical characteristics defined at each interface: (1) local spectrum of roughness, (2) local contrast of acoustic parameters, and (3) two-way full-field transmission intensity calculated taking into account only large-scale changes of the environment. (C) 2016 Acoustical Society of America.
机译:在依赖于依赖环境中扰动散射和混响的扰动方法是将每个界面处理为光滑参考接口的叠加,这可以包括大规模的确定性特征(例如沐浴族变化),并且与声波长度垂直相比,小。与该界面的偏差被视为随机粗糙度扰动。假设参考接口足够平滑,以允许该接口附近的场的分析或数值解决方案,然后可以在扰动理论中使用。对于任意数量的粗糙接口的一般情况下,对于任意数量的粗糙接口的常规情况下的表达式是在方便的数字模拟的形式中获得。在远程海洋混响的情况下,开发了几种表达式的近似值,与各种环境情景和不同类型的界面相关:海面,水沉积界面,埋藏沉积物接口和底部地下室。结果以简单的形式呈现,并提供混响强度的直接关系,在每个界面处定义三个关键特性:(1)粗糙度的局部光谱,(2)声学参数的局部对比度,(3)双向考虑到环境的大规模变化,计算全场传输强度。 (c)2016年声学学会。

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