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The Simulation of Underwater Acoustic Propagation with the Horizontal Changes of Sound Speed Profiles

机译:水下声波传播的仿真与声速分布的水平变化

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In the simulation of underwater acoustic propagation, sound speed is usually characterized by the vertical distribution of the sound speed profile (SSP), but it ignores lateral variation. This paper carried out simulation on constant SSP, negative and positive gradient profile, and real sound speed profiles (SSPs), concerning a Gulf Stream scenario, and by using Bellhop model. The characteristics of underwater acoustic propagation in the horizontal direction are discussed. The results show that the changes of sound velocity in the horizontal direction have a certain effect on underwater sound propagation. With the horizontal sound speed increasing for the steady SSPs, the number of eigenrays increase, and the transmission loss and the arrival times decrease. Conversely, the number of eigenrays decrease, and the transmission loss and the arrival times increase. With the horizontal changes of the unsteady SSPs, underwater acoustic propagation is basically followed by this law, but the transmission loss may change suddenly in some cases. It has a certain reference value for underwater acoustic modeling. Further work will be discussed and analyzed in the future.
机译:在水下声学传播的模拟中,声速通常通过声速分布(SSP)的垂直分布,但它忽略了横向变化。本文对恒定SSP,负极和正梯度简介进行了模拟,以及关于海湾流方案的真实声速(SSP),以及使用Bellhop模型。讨论了水平方向上的水下声波传播的特征。结果表明,水平方向上声速的变化对水下声音传播有一定影响。随着稳定SSP的水平声速增加,尖端的数量增加,传输损耗和到达时间降低。相反,特征范围的数量降低,传输损耗和到达时间增加。随着不稳定SSP的水平变化,水下声波传播基本上是该法律,但在某些情况下,传输损耗可能突然变化。它对水下声学建模具有一定的参考值。将来会讨论和分析进一步的工作。

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