Analysis of vector sound field in the direct-arrival zone in deep water

Sun Mei, S. Zhou, Fenghua Li
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引用次数: 1

Abstract

Vector sensors have attracted extensive interest for their abilities to measure the scalar acoustic pressure field and particle velocity at a single location in space. During a deep-water experiment held in the South China Sea in 2014, a vector sensor placed at the depth of 3146 m received the experimental signals launched from a towed transducer at 140 m depth. In the direct-arrival zone of the sound field generated by the towed source, the propagation properties of the vector sound field are studied based on the ray theory. It is shown that both the energies of the horizontal particle velocity and the vertical particle velocity are closely related to the grazing angle, which varies greatly with the horizontal distance between the source and the receiver. Then a source-range-estimation method is proposed based on the energy difference between the horizontal particle velocity and the vertical particle velocity. The proposed method is tested by experimental data.
深水直达区矢量声场分析
矢量传感器由于能够测量空间中单个位置的标量声压场和粒子速度而引起了广泛的兴趣。2014年在南海进行的一次深水实验中,放置在3146米深度的矢量传感器接收到了140米深度的拖曳式传感器发射的实验信号。在拖曳声源产生的声场直接到达区,基于射线理论研究了矢量声场的传播特性。结果表明,水平粒子速度能量和垂直粒子速度能量都与掠掠角密切相关,掠掠角随源与接收机水平距离的增大而变化较大。然后提出了一种基于水平粒子速度和垂直粒子速度能量差的源距离估计方法。实验数据验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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