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Seamount effects on long range acoustic propagation in the West Pacific

机译:西太平洋西太平洋远程声学传播的海山效果

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Acoustical oceanography depends highly on identification of eigen rays and accurate measurement of arrival times of the incoming rays. In particular, it is the case for the long-range propagation at the SOFAR (SOund Fixing and Ranging) channel. However, there are several candidates for disturbing the incoming wave trains such as internal waves, ocean currents and scattering at a seamount. We perform a series of numerical simulations of the long-range acoustic propagation to evaluate the scattering at a seamount. We find that even if the top of the seamount is 2000 m below the SOFAR axis, strong scattered signals still comes up to the arrival record at the SOFAR axis. This shows the possibility that scattered signals at the ocean bottom contaminate the wave trains recorded at the SOFAR axis.
机译:声学海洋学高度依赖于特征射线的鉴定,并准确测量进入光线的到达时间。 特别地,在SOFAR(声音固定和测距)通道上的远程传播是一种情况。 然而,有几个候选人扰乱了诸如内部波,海洋电流和在海山上的散射的候选者。 我们执行一系列数值模拟的远程声学传播,以评估海山的散射。 我们发现即使海山的顶部是2轴下方的2000米,强大的散射信号仍然达到射频轴的到达记录。 这表明海洋底部散射信号污染在轿厢轴上记录的波动列表的可能性。

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