THE SEA-FLOOR BOREHOLE ARRAY SEISMIC SYSTEM (SEA-BASS) AND VLF AMBIENT NOISE

被引:13
|
作者
STEPHEN, RA
KOELSCH, DE
BERTEAUX, H
BOCCONCELLI, A
BOLMER, S
CRETIN, J
ETOURMY, N
FABRE, A
GOLDSBOROUGH, R
GOULD, M
KERY, S
LAURENT, J
OMNES, G
PEAL, K
SWIFT, S
TURPENING, R
ZANI, C
机构
[1] MIT, CAMBRIDGE, MA 02139 USA
[2] INST FRANCAIS PETR, F-92508 RUEIL MALMAISON, FRANCE
[3] COMPANIE GEN GEOPHYS, F-91341 MASSY, FRANCE
[4] ATELIERS MECAN ST GAUDENS, F-31802 ST GAUDENS, FRANCE
[5] WORD CRAFT, E FALMOUTH, MA 02536 USA
关键词
SEISMOLOGY; SEA-FLOOR; BOREHOLE; AMBIENT NOISE;
D O I
10.1007/BF01224745
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The Seafloor Borehole Array Seismic System (SEA-BASS) has been developed to measure the pressure and three-dimensional particle velocity of the VLF sound field (2-50 Hz) below the seafloor in the deep ocean. The system consists of four three-component borehole seismometers (with an optional hydrophone). a borehole digitizing unit, and a seafloor control and recording package. The system can be deployed using a wireline re-entry capability from a conventional research vessel in Deep Sea Drilling Project (DSDP) and Ocean Drilling Project (ODP) boreholes. Data from below the seafloor are acquired either on-board the research vessel via coaxial tether or remotely on the seafloor in a self-contained package. If necessary the data module from the seafloor package can be released independently and recovered on the surface. This paper describes the engineering specifications of SEABASS, the tests that were carried out, and preliminary results from an actual deep sea deployment. VLF ambient noise levels beneath the seafloor acquired on the Low Frequency Acoustic-Seismic Experiment (LFASE) are within 20 dB of levels from previous seafloor borehole seismic experiments and from land borehole measurements. The ambient noise observed on LFASE decreases by up to 12 dB in the upper 100 m of the seafloor in a sedimentary environment.
引用
收藏
页码:243 / 286
页数:44
相关论文
共 50 条
  • [1] BOREHOLE MEASUREMENTS BENEATH THE SEA-FLOOR
    WORTHINGTON, PF
    OCEANUS, 1994, 36 (04) : 129 - 133
  • [2] SEISMIC RESPONSE TO SEA-FLOOR DIFFRACTORS
    NEWMAN, P
    GEOPHYSICS, 1984, 49 (05) : 625 - 625
  • [3] SEISMIC IMAGING OF SEA-FLOOR SPREADING
    MUTTER, JC
    SCIENCE, 1992, 258 (5087) : 1442 - 1443
  • [4] A Comparison of Sea-Floor and On-Land Seismic Ambient Noise in the Campi Flegrei Caldera, Southern Italy
    Vassallo, Maurizio
    Bobbio, Antonella
    Iannaccone, Giovanni
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 2008, 98 (06) : 2962 - 2974
  • [5] A VERTICAL ARRAY METHOD FOR SHALLOW SEISMIC REFRACTION SURVEYING OF THE SEA-FLOOR
    HUNTER, JA
    PULLAN, SE
    GEOPHYSICS, 1990, 55 (01) : 92 - 96
  • [6] VERY LOW-FREQUENCY AMBIENT NOISE AT THE SEA-FLOOR UNDER THE BEAUFORT SEA ICECAP
    WEBB, SC
    SCHULTZ, A
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1992, 91 (03): : 1429 - 1439
  • [7] BEAMFORMING ON SEISMIC INTERFACE WAVES WITH AN ARRAY OF GEOPHONES ON THE SHALLOW SEA-FLOOR
    TENCATE, JA
    MUIR, TG
    CAITI, A
    KRISTENSEN, A
    MANNING, JF
    SHOOTER, JA
    KOCH, RA
    MICHELOZZI, E
    IEEE JOURNAL OF OCEANIC ENGINEERING, 1995, 20 (04) : 300 - 310
  • [8] SEISMIC REFRACTION ON CONTINENTAL SHELVES WITH DETECTORS ON SEA-FLOOR
    AVEDIK, F
    RENARD, V
    GEOPHYSICS, 1973, 38 (05) : 999 - 999
  • [9] EXPLORING AN ACTIVE SEA-FLOOR HYDROTHERMAL SYSTEM
    不详
    GEOTIMES, 1995, 40 (08): : 21 - 23
  • [10] Sea-Floor Image Transmission System for AUV
    Ahn, Jonghyun
    Yasukawa, Shinsuke
    Weerakoon, Tharindu
    Sonoda, Takashi
    Nishida, Yuya
    Ura, Tamaki
    Ishii, Kazuo
    OCEANS 2017 - ABERDEEN, 2017,