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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Wave theory modelling: a convenient approach to CW and pulse propagation modelling in low-frequency acoustics
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Wave theory modelling: a convenient approach to CW and pulse propagation modelling in low-frequency acoustics

机译:波动理论建模:在低频声学中进行连续波和脉冲传播建模的便捷方法

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摘要

The most commonly used continuous-wave (CW) propagation models are presented and their areas of applicability indicated. Furthermore, it is shown how these numerical codes can be extended to provide pulse results by Fourier synthesis of CW solutions. The ability of the acoustic models to describe sound propagation accurately in complicated ocean environments is demonstrated through a sequence model/date comparisons involving both CW and pulse-propagation results. It is also shown that the full complexity of real ocean environments must be considered in the numerical models to accurately predict the propagation conditions for a broad range of source frequencies. In conclusion, it is noted that the biggest difficulty today in sonar performance prediction modelling is not associated with the modelling tools themselves, but rather with the lack of environmental information to be used as input to the models.
机译:介绍了最常用的连续波(CW)传播模型,并指出了它们的适用范围。此外,还显示了如何通过CW解决方案的傅立叶综合将这些数字代码扩展以提供脉冲结果。通过涉及连续波和脉冲传播结果的序列模型/日期比较,证明了声学模型在复杂的海洋环境中准确描述声音传播的能力。还表明,必须在数值模型中考虑真实海洋环境的全部复杂性,才能准确预测宽范围源频率的传播条件。总而言之,应该指出,当今声纳性能预测建模中的最大困难与建模工具本身无关,而与缺乏环境信息以用作模型输入有关。

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