Sound field in a shallow-water arctic-type waveguide with a bottom containing a gas-saturated sediment layer

被引:0
|
作者
V. A. Grigoriev
V. G. Petnikov
A. V. Shatravin
机构
[1] Voronezh State University,Prokhorov General Physics Institute
[2] Russian Academy of Sciences,Shirshov Institute of Oceanology
[3] Russian Academy of Sciences,undefined
来源
Acoustical Physics | 2017年 / 63卷
关键词
shallow water; fluid-elastic bottom; discrete mode spectrum; quasimodes; Pekeris cut; sound attenuation; sound speed in sediments; gas saturation;
D O I
暂无
中图分类号
学科分类号
摘要
We have analyzed the possibility of mode description of a sound field in a shallow-water Arctic-type waveguide with a bottom containing a gas-saturated sediment fluid layer lying on an elastic half-space (permafrost). It has been established that the modes, including quasimodes, calculated using Pekeris cuts, yield the best description of the field in the water layer at small distances from the sound source on the order of 1–10 waveguide depths. Calculations of propagation losses in the waveguide for a thickness of the sediment layer comparable to or larger than the length of a sound wave in the sediments have shown that the sea bottom behaves like a homogeneous fluid half-space. Propagation losses sharply increase as the sound speed in the sediments approaches the sound speed in water. We have proposed a technique for estimating the sound speed in the sediment layer based on analysis of the attenuation curves of the sound field components corresponding to different sums of waveguide modes.
引用
收藏
页码:433 / 448
页数:15
相关论文
共 38 条
  • [1] Sound Field in a Shallow-Water Arctic-Type Waveguide with a Bottom Containing a Gas-Saturated Sediment Layer
    Grigoriev, V. A.
    Petnikov, V. G.
    Shatravin, A. V.
    ACOUSTICAL PHYSICS, 2017, 63 (04) : 433 - 448
  • [2] Attenuation of sound in shallow-water areas with gas-saturated bottoms
    V. A. Grigor’ev
    A. A. Lun’kov
    V. G. Petnikov
    Acoustical Physics, 2015, 61 : 85 - 95
  • [3] Attenuation of sound in shallow-water areas with gas-saturated bottoms
    Grigor'ev, V. A.
    Lun'kov, A. A.
    Petnikov, V. G.
    ACOUSTICAL PHYSICS, 2015, 61 (01) : 85 - 95
  • [4] Sound Propagation in Shallow Water with an Inhomogeneous GAS-Saturated Bottom
    Grigor'ev, V. A.
    Petnikov, V. G.
    Roslyakov, A. G.
    Terekhina, Ya. E.
    ACOUSTICAL PHYSICS, 2018, 64 (03) : 331 - 346
  • [5] Sound Propagation in Shallow Water with an Inhomogeneous GAS-Saturated Bottom
    V. A. Grigor’ev
    V. G. Petnikov
    A. G. Roslyakov
    Ya. E. Terekhina
    Acoustical Physics, 2018, 64 : 331 - 346
  • [6] Nonlinear sound in a gas-saturated sediment layer
    V. A. Gusev
    O. V. Rudenko
    Acoustical Physics, 2015, 61 : 152 - 164
  • [7] Nonlinear sound in a gas-saturated sediment layer
    Gusev, V. A.
    Rudenko, O. V.
    ACOUSTICAL PHYSICS, 2015, 61 (02) : 152 - 164
  • [8] An Arctic-Type Shallow-Water Acoustic Waveguide as an Information Transmission Channel for Underwater Communications
    M. V. Volkov
    V. A. Grigor’ev
    I. V. Zhilin
    A. A. Lunkov
    V. G. Petnikov
    A. V. Shatravin
    Acoustical Physics, 2018, 64 : 692 - 697
  • [9] An Arctic-Type Shallow-Water Acoustic Waveguide as an Information Transmission Channel for Underwater Communications
    Volkov, M. V.
    Grigor'ev, V. A.
    Zhilin, I. V.
    Lunkov, A. A.
    Petnikov, V. G.
    Shatravin, A. V.
    ACOUSTICAL PHYSICS, 2018, 64 (06) : 692 - 697
  • [10] Sound velocity in shallow water bodies with gas-saturated water-bottom (ice) interfaces
    Studenichnik, N.V.
    Glotov, V.P.
    Akusticheskij Zhurnal, 2004, 50 (01): : 111 - 116