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AEYFI 05实验‘温度-声简正波传播时间’起伏特性研究 被引量:1

Research to the fluctuation of tempreture-normal mode travel time in AEYFI 05
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摘要 处理分析AEYFI 05声学实验温度链和声传播数据,研究温度时-空间统计、相关特性及其声传播时间统计特性。分析表明1号声简正波的传播时间起伏的功率谱与温跃层附近温度时间序列的功率谱存在明显的相似:在高频区域f>30cpd呈ω-β(β≌1.7-1.8)的幂次衰减,包含相干结构。应用简正波传播时间与声速起伏的对应关系式,给出了上述对应关系的理论解释。 The data acquired from moored sensors and shipboard hydrographic instruments of AEYFI 05(Acoustics Experiment of Yellow Sea Oceanic Front and Internal Waves) are processed.Both of the spa-tial temporal statistical and correlative characteristics to temperature are analyzed,and the sound travel-time statistical character is calculated too.Results indicate that the frequency spectrum of No.1 Normal Mode travel-time fluctuation is qualitatively similar to the one of temperature time sequence near thermocline,and two spectra present ω-β(β≌1.7-1.8) attenuation for f〉30cpd,and both include coherent-structures.The mathi-matic relationships between time and sound-speed fluctuation of Normal Mode propagation are given by the Normal Mode perturbation theory which is used to explain the qualitatively relation between two spectra.
出处 《声学技术》 CSCD 北大核心 2008年第6期821-827,共7页 Technical Acoustics
基金 国家863计划项目资助(2006AA09Z114) 预研项目资助
关键词 黄海海洋锋面和内波声学实验(AEYFI) 简正波传播时间 内波 谱结构 AEYFI 05(Acoustics Experiment of Yellow Sea Oceanic Front and Internal Waves) normal mode travel time internal-wave spectrum-structure
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  • 1Lee O S. Effect of an internal wave on sound in ocean[J]. J. A. S. A, 1961, 33: 677.
  • 2Lee O S. Fixed path acoustic transmission in the presence of internal waves[J]. J.A.S. A, 1960. 32: 1514.
  • 3Lincoin Baxter. Fluctuations in sound transmission through internal waves associated with the thermocline: A comp- uter model for acoustic transmission through sound velocity fields calculated from thrmistor chain,CTD,XBT,and acoustic bookcattering[J].J.A.S.A.1982.71(1):64-66.
  • 4Aank W H,Zachariasen F. Sound propagation through a fluctuating stratified ocean: Theory and observation[J]. J. A. S. A, 1976, 59: 818-838.
  • 5Jensen F B, Kuperman W A, Porter M B, et al. Computational ocean acoustics[M]. New Yoric Springer-Verlag, 1992.
  • 6Bates B J. Acoustic different scattrering cross section for internal waves[J]. J.A.S.A, 1984, 75(Suppl): S84.
  • 7Lynch J F, Jin G L, et al. Acoustic travel-time perturbations due to shallow-water internal waves and internal tides in the Barents Sea polar front: Theory and experiment[J]. J. A. S. A, 1996, 99(2): 803-821.
  • 8Peter Traykovski. Travel-time perturbations due to internal waves: Equivalence of modal and ray solutions[J]. J. A. S. A, 1996, 99(2): 822-830.
  • 9Peter F. Worcester walter H Munk and Robert C. Spindel, Acoustic remote sensing of ocean grays[J]. Acoustic Today, 2005, 1(10): 11-17.
  • 10陈守虎,吴立新,张仁和,李整林,James F.Lynch,Timothy F.Duda,Arthur E.Newhall.南中国海内波特征及其引起的声场起伏[J].自然科学进展,2004,14(10):1163-1170. 被引量:14

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  • 1王宁.On criterion of modal adiabaticity[J].Science China Mathematics,2001,44(11):1469-1476. 被引量:4
  • 2Zhou J X,Zhang X S,Rogers P H.Resonant interaction of sound waves with internal solitons in the coastal zone[J].J Acoust Soc Am,1991,90:2042-2054.
  • 3Rubenstein D,Brill M N.Acoustic variability due to internal waves and surface waves in shallow water,in Ocean Variability and Acoustics Propagation[C].Edited by Potter J and Warn-Varnas A.Kluwer Academic,Dordrecht,1991.215.
  • 4Apel J R,Badiey M,Chiu C S,et al.An overview of the SWARM 1995 shallow-water internal wave acoustic scattering xperiment[J].IEEE J Ocean Eng.1997,22:465.
  • 5Headrick R H,Lynch J F,Kemp J N,et al.Acoustic normal mode fluctuation statistics in the 1995 SWARM internal wave scattering experiment,J.Acoust.Soc,Am 107,201; and the SWARM group,Modeling mode arrivals in the 1995 SWARM experiment acoustic transmissions[J].J Acoust Soc Am,2000,107:220-236.
  • 6Lynch J F,Jin G,Pawlowicz R,et al.Acoustic travel-time perturbations due to shallow-water internal waves and internal tides in the Barents Sea Polar Front:Theory and experiment[J].J AcoustSoc Am,1996,99:803.
  • 7Rubenstein D.Observations of cnoidal internal waves and their effect on acoustic propagation in shallow water[J].IEEE J Ocean Eng,1999,24:346.
  • 8Preisig J C,Duda T F.Coupled acoustic mode propagation through continental shelf internal solitary waves[J].IEEE J Ocean Eng,1997,22:256.
  • 9Duda T F,Preisig J C.A modeling study of acoustic propagation though moving shallow-water solitary wave packets[J].IEEE J Ocean Eng,1999,24:16.
  • 10Katsnelson B G,Pereselkov S A.Resonance effects in sound scattering by internal wave packets in a shallow sea[J].Sov Acoust Phys,1998,44:684.

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