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Frequency shifts of the sound field interference pattern in shallow water because of second-mode soliton-like internal waves

机译:二次水样孤波内波在浅水中声场干涉图的频移

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Numerical simulation is carried out to analyze the effect of an internal soliton of the second gravity mode on low-frequency sound propagation in an oceanic shelf region. The simulation is performed using the data of a full-scale experiment performed on the shelf of the South China Sea near Dongsha atoll, where the aforementioned solitons had been detected by stationary vertical thermistor arrays. The calculations take into account the effect of horizontal refraction of sound waves. It is assumed that a stationary acoustic track is oriented across the predominant propagation direction of internal waves. The results of simulation show that, when the soliton crosses the stationary track, some of the sound field modes are focused, whereas other modes are defocused. It is demonstrated that the soliton parameters can be adequately determined from the frequency shifts of the sound field interference pattern. However, such an estimate of the soliton parameters is only possible for a limited length of the stationary track for which the effect of horizontal refraction is sufficiently weak.
机译:进行了数值模拟,以分析第二重力模式的内部孤子对大洋架地区低频声音传播的影响。使用在东沙环礁附近的南中国海的架子上进行的大规模实验的数据进行了模拟,其中上述孤子已通过固定的垂直热敏电阻阵列检测到。该计算考虑了声波的水平折射的影响。假定固定的声轨跨内波的主要传播方向定向。仿真结果表明,当孤子穿过静止轨道时,某些声场模式被聚焦,而其他模式则被散焦。已经证明,可以从声场干涉图的频率偏移中适当地确定孤子参数。然而,孤子参数的这种估计仅对于固定轨道的有限长度是可能的,对此水平折射的影响足够弱。

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