首页> 外文期刊>The Journal of the Acoustical Society of America >Broadband acoustic signal variability induced by internal solitary waves and semidiurnal internal tides in the northeastern East China Sea
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Broadband acoustic signal variability induced by internal solitary waves and semidiurnal internal tides in the northeastern East China Sea

机译:宽带声信号因东北东北部内部孤独波和半峰内部潮汐引起的宽带声学信号变异性

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摘要

The relation between high-frequency broadband acoustic signal variability and two types of internal waves (short-period internal solitary waves; ISWs, and semidiurnal internal tides; ITs) is investigated using data collected during the shallow-water acoustic variability experiment 2015 in the northeastern East China Sea. In this flat (similar to 100m depth) region, an underwater sound channel with sound speed profile (SSP) variability observed during the experiment significantly affects the acoustic variability induced by the ISW, and the arrival structure of the channel impulse response (CIR) modeled by ray tracing. To model the range-dependent SSP due to ISW, the location and characteristics of the mode-1 ISW of wavelength (0.5-1km) are estimated and verified based on the two-layer Korteweq-de Vries theory and by analyzing the observed temperature fluctuations. It is found from comparison between the measured and modeled CIRs that the ISW scatters the arrival structures of refracted rays. Meanwhile, semidiurnal ITs change the channel size modeled as range-independent considering the wavelengths (15-40km) longer than the model range (3km). Higher centroid of acoustic arrival time is found with lower isotherm depressions owing to the multimode ITs, indicative of acoustic energy focusing at the lower channel region.
机译:高频宽带声信号可变性和两种类型的内部波之间的关系(; ISWS和半日内部潮汐;短周期内孤立波ITS)是使用在东北浅水声学变性实验2015期间收集的数据研究东海。在该平坦的(类似于百米深度)区域,在实验过程中观察到有声的速度曲线(SSP)变异水下声道显著影响由ISW引起的声学可变性,和信道脉冲响应(CIR)的到来结构建模通过射线跟踪。从属范围-SSP建模由于ISW,波长(0.5-1km)的模式1 ISW的位置和特性的估计并验证基于两层上Korteweq-德弗里斯理论并通过分析所观察到的温度波动。它是从测量的和模拟的CIR,该ISW散射折射光线的到达结构之间的比较发现。同时,半日及其变化建模为范围无关考虑波长(15-40km)比模型范围(3公里)更长的沟道尺寸。更高质心声到达时间发现由于多模其下的等温线洼地,指示声能聚焦在较低的沟道区。

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    Agcy Def Dev POB 18 Chang Won 51678 Gyeongsangnamdo South Korea;

    Seoul Natl Univ Dept Naval Architecture &

    Ocean Engn Res Inst Marine Syst Engn Seoul 08826 South Korea;

    Seoul Natl Univ Dept Naval Architecture &

    Ocean Engn Res Inst Marine Syst Engn Seoul 08826 South Korea;

    Seoul Natl Univ Sch Earth &

    Environm Sci Seoul 08826 South Korea;

    Seoul Natl Univ Sch Earth &

    Environm Sci Seoul 08826 South Korea;

    Sejong Univ Dept Def Syst Engn Seoul 05006 South Korea;

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  • 正文语种 eng
  • 中图分类 声学;
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