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Determination of environmental sensitivity of acoustic propagation on continental shelves using an equivalent fluid parabolic equation model

机译:用等效流体抛物线方程模型确定大陆架上声传播的环境敏感性

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摘要

A coupled environment and acoustic prediction system was developed to evaluate the sensitivity of acoustic propagation on the continental shelf to water column and sediment properties. The acoustic prediction system used the range-dependent, parabolic-equation ifd model. Since the ifd-PE model is only applicable to a fluid bottom, an equivalent fluid bottom approximation was made to incorporate the elastic medium. The environment (coastal ocean) prediction system used a simulated time-varying temperature field for the northern California shelf, calculated from a ocean general circulation model. The solid bottom geoacoustic parameters were determined from Hamilton's model, using extensive sediment and seismic profile data. The acoustic propagation loss was calculated for the total 103-day period of upwelling season under various configurations of source depth, frequency, and topography. The environmental sensitivity was examined from the basic statistics. While this study is limited to the California shelf and for the upwelling season, the present approach suggests a method for systematic and realistic evaluation of acoustic variability on continental shelves.
机译:开发了耦合的环境和声音预测系统,以评估大陆架上声传播对水柱和沉积物特性的敏感性。声学预测系统使用了范围相关的抛物线方程ifd模型。由于ifd-PE模型仅适用于流体底部,因此进行了等效的流体底部近似以合并弹性介质。环境(沿海)预测系统使用了北加州陆架的模拟时变温度场,该温度场是根据海洋总环流模型计算得出的。使用大量沉积物和地震剖面数据,根据汉密尔顿模型确定固体底部的地声参数。在源深度,频率和地形的各种配置下,计算了整个上升季节103天的声传播损失。从基本统计数据检查了环境敏感性。虽然这项研究仅限于加利福尼亚大陆架和上升季节,但本方法提出了一种系统,现实地评估大陆架声音变化的方法。

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