Experimental Testing of Acoustic Thermometry at the Scale of the Sea of Japan with a Receiver System Placed on the Axis of an Underwater Sound Channel

被引:0
|
作者
Yu. N. Morgunov
A. A. Golov
E. A. Voytenko
M. S. Lebedev
V. V. Razhivin
D. D. Kaplunenko
S. S. Shkramada
机构
[1] Ilyichev Pacific Oceanological Institute,
[2] Far Eastern Branch,undefined
[3] Russian Academy of Sciences,undefined
来源
Acoustical Physics | 2023年 / 69卷
关键词
hydroacoustics; pseudo-random signals; ocean circulation models; impulse response; eddy loc-alization;
D O I
暂无
中图分类号
学科分类号
摘要
Abstract—We discuss the results obtained when performing a test acoustic-hydrological experiment in August 2022 at a marine test site from the coast of Sakhalin Island to Kita-Yamato Bank in the Sea of Japan. The methodology of preliminary studies in the water area intended for studying climatic variability of temperature regimes of the aquatic environment based on numerical modeling using the RAY computational program and the NEMO ocean hydrodynamic circulation model is presented. One of the main results is the average temperature of the marine environment calculated with high accuracy on the axis of the underwater sound channel in the Sea of Japan on the 1000-kilometer acoustic trace at the crossing of the vortex system. The shape of the measuring system and the technical and computational means and methods described in the article can be used as a basis for the organization of high-precision operational monitoring of thermodynamic processes in extended sea areas.
引用
收藏
页码:655 / 663
页数:8
相关论文
共 12 条
  • [1] Experimental Testing of Acoustic Thermometry at the Scale of the Sea of Japan with a Receiver System Placed on the Axis of an Underwater Sound Channel
    Morgunov, Yu. N.
    Golov, A. A.
    Voytenko, E. A.
    Lebedev, M. S.
    Razhivin, V. V.
    Kaplunenko, D. D.
    Shkramada, S. S.
    [J]. ACOUSTICAL PHYSICS, 2023, 69 (05) : 655 - 663
  • [2] Experimental Test of the Acoustic Thermometry Method on a Long Track in the Sea of Japan
    G. I. Dolgikh
    Yu. N. Morgunov
    V. V. Bezotvetnykh
    A. V. Burenin
    A. A. Golov
    E. A. Voitenko
    V. V. Razhivin
    A. A. Tagiltsev
    [J]. Doklady Earth Sciences, 2023, 508 : 30 - 33
  • [3] Experimental Test of the Acoustic Thermometry Method on a Long Track in the Sea of Japan
    Dolgikh, G. I.
    Morgunov, Yu. N.
    Bezotvetnykh, V. V.
    Burenin, A. V.
    Golov, A. A.
    Voitenko, E. A.
    Razhivin, V. V.
    Tagiltsev, A. A.
    [J]. DOKLADY EARTH SCIENCES, 2023, 508 (01) : 30 - 33
  • [4] Point-source field in the underwater sound channel of the Sea of Japan
    Vadov, RA
    [J]. ACOUSTICAL PHYSICS, 1998, 44 (05) : 516 - 523
  • [5] Erratum to: Experimental Test of the Acoustic Thermometry Method on a Long Track in the Sea of Japan
    G. I. Dolgikh
    Yu. N. Morgunov
    V. V. Bezotvetnykh
    A. V. Burenin
    A. A. Golov
    E. A. Voitenko
    V. V. Razhivin
    A. A. Tagiltsev
    [J]. Doklady Earth Sciences, 2023, 513 (1) : 1246 - 1246
  • [6] Experimental Study of the Impulse Response Function Variability of Underwater Sound Channel in the Sea of Japan Using Pseudorandom Sequences and Its Application to Long-Range Acoustic Navigation
    Morgunov, Yu N.
    Bezotvetnykh, V. V.
    Golov, A. A.
    Burenin, A., V
    Lebedev, M. S.
    Petrov, P. S.
    [J]. ACOUSTICAL PHYSICS, 2021, 67 (03) : 287 - 292
  • [7] Underwater acoustic communication system using diversity based on ray modeled underwater acoustic channel in Yellow Sea
    Kang, Jiwoong
    Kim, Hyeonsu
    Ahn, Jongmin
    Chung, Jaehak
    [J]. JOURNAL OF THE ACOUSTICAL SOCIETY OF KOREA, 2016, 35 (01): : 1 - 7
  • [8] Experimental Study of the Impulse Response Function Variability of Underwater Sound Channel in the Sea of Japan Using Pseudorandom Sequences and Its Application to Long-Range Acoustic Navigation
    Yu. N. Morgunov
    V. V. Bezotvetnykh
    A. A. Golov
    A. V. Burenin
    M. S. Lebedev
    P. S. Petrov
    [J]. Acoustical Physics, 2021, 67 : 287 - 292
  • [9] Sea Experimental for Compressive Sensing-Based Sparse Channel Estimation of Underwater Acoustic TDS-OFDM System
    Junejo, Naveed Ur Rehman
    Esmaiel, Hamada
    Sattar, Mariyam
    Sun, Haixin
    Khalil, Muhammad Amir
    Ullah, Ihsan
    [J]. WIRELESS COMMUNICATIONS & MOBILE COMPUTING, 2022, 2022
  • [10] An unsupervised clustering-based scale-lag receiver design approach for the doubly selective underwater acoustic channel
    Bhadouria, Vijay Singh
    Agrawal, Monika
    Kumar, Ritesh
    [J]. JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2022, 152 (01): : 342 - 353