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Analysis of acoustic-energy fluctuations caused by internal waves in the Yellow Sea

机译:黄海内部波引起的声能波动分析

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This paper analyzes experimental data on internal waves and acoustic intensity fluctuations in the Yellow Sea. The temperature profile of the experimental sea area has a typical three-layered structure. Internal waves with the tidal-period, nonlinear internal waves, and high-frequency internal waves are all observed, and among these the semidiurnal internal tide and nonlinear internal waves are the more active. The acoustic-energy fluctuations of 600–900 Hz linear frequency-modulated (LFM) signals exceed 10 dB over 10km. The time-varying acoustic-energy fluctuation curve contains two periodic components on timescales of the order of hours and minutes. Data analyses and simulations show that the different periodic components of the LFM signal fluctuations are related to changes in the depth of the sound source and of the receiving array caused by tides and to changes in the acoustic-velocity profile caused by internal waves.
机译:本文分析了黄海内部波和声学强度波动的实验数据。实验海域的温度曲线具有典型的三层结构。潮汐周期,非线性内部波和高频内波的内部波都观察到,并且在这些半潮和非线性内部波中是更有效的。 600-900Hz线性频率调制(LFM)信号的声能波动超过10km超过10km。时变声 - 能量波动曲线在数小时和分钟的时间尺寸上包含两个周期性组件。数据分析和仿真表明,LFM信号波动的不同周期性分量与声源的深度和由潮汐引起的接收阵列的变化有关,并且由内部波引起的声速度曲线的变化。

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