Low frequency ambient noise dynamics and trends in the Indian Ocean, Cape Leeuwin, Australia

被引:4
|
作者
Park, Joseph [1 ]
Haralabus, Georgios [1 ]
Zampolli, Mario [1 ]
Metz, Dirk [1 ]
机构
[1] Comprehens Nucl Test Ban Treaty Org, Int Monitoring Syst Engn & Dev, Vienna, Austria
来源
关键词
LONG-TERM; DIPOLE; MODE;
D O I
10.1121/10.0017840
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Examination of 18 years of nearly continuous low frequency deep ocean ambient noise offshore Cape Leeuwin, Australia, finds evidence of a decreasing nonlinear trend suggestive of long-term cyclic dynamics. The nonlinear trend is found to be consistent with trends in oceanographic sea surface temperature, which are thought to drive changes in Antarctic sea ice extent. Assessment of oscillatory dynamics finds causal covariance between ambient noise levels and Indian Ocean sea surface temperature dipoles. Dynamics of annual ambient noise and Antarctic sea ice extent are examined suggesting a phase-locked relationship revealing nonlinear characteristics of the presumed dependence. Collectively, the hypotheses that deep water ambient noise dynamics in the Indian Ocean are influenced by Antarctic sea ice extent and melt dynamics and that linear models do not fully capture long-term ambient noise trends and dynamics are supported.
引用
收藏
页码:2312 / 2323
页数:12
相关论文
共 50 条
  • [31] VARIABILITY OF LOW-FREQUENCY AMBIENT SEA NOISE
    BANNISTER, RW
    DENHAM, RN
    GUTHRIE, KM
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1979, 65 (05): : 1156 - 1163
  • [32] Ocean Sound Analysis Software for Making Ambient Noise Trends Accessible (MANTA)
    Miksis-Olds, Jennifer L.
    Dugan, Peter J.
    Martin, S. Bruce
    Klinck, Holger
    Mellinger, David K.
    Mann, David A.
    Ponirakis, Dimitri W.
    Boebel, Olaf
    FRONTIERS IN MARINE SCIENCE, 2021, 8
  • [33] VERY LOW-FREQUENCY OCEAN BOTTOM AMBIENT SEISMIC NOISE AND COUPLING ON THE SHALLOW CONTINENTAL-SHELF
    TREVORROW, MV
    YAMAMOTO, T
    TURGUT, A
    GOODMAN, D
    BADIEY, M
    MARINE GEOPHYSICAL RESEARCHES, 1989, 11 (02) : 129 - 152
  • [34] Variability of the coherent arrivals extracted from low-frequency deep-ocean ambient noise correlations
    Woolfe, Katherine F.
    Sabra, Karim G.
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 2015, 138 (02): : 521 - 532
  • [35] LOW-FREQUENCY AMBIENT OCEAN NOISE AND SOUND-TRANSMISSION OVER A THINLY SEDIMENTED ROCK BOTTOM
    WORLEY, RD
    WALKER, RA
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1982, 71 (04): : 863 - 870
  • [36] LOW-FREQUENCY NOISE OBSERVATIONS IN THE DEEP OCEAN
    ADAIR, RG
    ORCUTT, JA
    JORDAN, TH
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1986, 80 (02): : 633 - 645
  • [37] WIND DEPENDENCE OF DEEP OCEAN AMBIENT NOISE AT LOW-FREQUENCIES
    CHAPMAN, NR
    CORNISH, JW
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1993, 93 (02): : 782 - 789
  • [38] HYDROPHONE FOR MEASURING ACOUSTIC AMBIENT NOISE IN OCEAN AT LOW-FREQUENCIES
    GROVES, ID
    REPORT OF NRL PROGRESS, 1974, (MAR): : 29 - 29
  • [39] HYDROPHONE FOR MEASURING ACOUSTIC AMBIENT NOISE IN OCEAN AT LOW-FREQUENCIES
    GROVES, ID
    REPORT OF NRL PROGRESS, 1974, (APR): : 25 - 25
  • [40] Underwater Ambient noise variability from satellite data-An Indian Ocean perspective
    Nair, Nimmi R.
    Shani, Elizabeth N. X.
    Raju, R. P.
    Satheeshkumar, S.
    2015 IEEE UNDERWATER TECHNOLOGY (UT), 2015,