Precise positioning of ocean bottom seismometer by using acoustic transponder and CTD

被引:27
|
作者
Shiobara, H
Nakanishi, A
Shimamura, H
Mjelde, R
Kanazawa, T
Berg, EW
机构
[1] HOKKAIDO UNIV,FAC SCI,LAB OCEAN BOTTOM SEISMOL,SAPPORO,HOKKAIDO 060,JAPAN
[2] UNIV BERGEN,INST SOLID EARTH PHYS,N-5007 BERGEN,NORWAY
[3] UNIV TOKYO,FAC SCI,EARTHQUAKE CHEM LAB,TOKYO 113,JAPAN
[4] STATOIL,R&D,N-7004 TRONDHEIM,NORWAY
关键词
ocean bottom seismometer; acoustic transponder; positioning;
D O I
10.1023/A:1004246012551
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
We have obtained precise estimates of the position of Ocean Bottom Seismometers (OBS) on the sea bottom. Such estimates are usually uncertain due to their free falling deployment. This uncertainty is small enough, or is correctable, with OBS spacing of more than 10 km usually employed in crustal studies. But, for example, if the spacing is only 700 m for OBS reflection studies, estimates of the position with an accuracy of the order of 10 m or more is required. The determination was carried out with the slant range data, ship position data and a 1D acoustic velocity structure calculated from Conductivity-Temperature-Depth (CTD) data, if they are available. The slant range data were obtained by an acoustic transponder system designed for the sinker releasing of the OBS or travel time data of direct water wave arrivals by airgun shooting. The ship position data was obtained by a single GPS or DGPS. The method of calculation was similar to those used for earthquake hypocenter determination. The results indicate that the accuracy of determined OBS positions is enough for present OBS experiments, which becomes order of 1 m by using the DGPS and of less than 10 m by using the single GPS, if we measure the distance from several positions at the sea surface by using a transponder system which is not designed for the precise ranging. The geometry of calling positions is most important to determine the OBS position, even if we use the data with larger error, such as the direct water wave arrival data. The 1D acoustic velocity structure should be required for the correct depth of the OBS. Although it is rare that we use a CTD, even an empirical Velocity structure works well.
引用
收藏
页码:199 / 209
页数:11
相关论文
共 50 条
  • [1] Precise Positioning of Ocean Bottom Seismometer by Using Acoustic Transponder and CTD
    Hajime Shiobara
    Ayako Nakanishi
    Hideki Shimamura
    Rolf Mjelde
    Toshihiko Kanazawa
    Eivind W. Berg
    Marine Geophysical Researches, 1997, 19 : 199 - 209
  • [2] Accurate Multiple Ocean Bottom Seismometer Positioning in Shallow Water Using GNSS/Acoustic Technique
    Liu, Huimin
    Wang, Zhenjie
    Zhao, Shuang
    He, Kaifei
    SENSORS, 2019, 19 (06)
  • [3] Accurate Ocean Bottom Seismometer Positioning Method Inspired by Multilateration Technique
    Omar Benazzouz
    Luis M. Pinheiro
    Luis M. A. Matias
    Alexandra Afilhado
    Daniel Herold
    Seth S. Haines
    Mathematical Geosciences, 2018, 50 : 569 - 584
  • [4] Accurate Ocean Bottom Seismometer Positioning Method Inspired by Multilateration Technique
    Benazzouz, Omar
    Pinheiro, Luis M.
    Matias, Luis M. A.
    Afilhado, Alexandra
    Herold, Daniel
    Haines, Seth S.
    MATHEMATICAL GEOSCIENCES, 2018, 50 (05) : 569 - 584
  • [5] OCEAN BOTTOM SEISMOMETER CAPSULE
    PROTHERO, WA
    TRANSACTIONS-AMERICAN GEOPHYSICAL UNION, 1972, 53 (11): : 1050 - &
  • [6] Precise aftershock distribution of the 2007 Chuetsu-oki Earthquake obtained by using an ocean bottom seismometer network
    Shinohara, Masanao
    Kanazawa, Toshihiko
    Yamada, Tomoaki
    Nakahigashi, Kazuo
    Sakai, Shin'ichi
    Hino, Ryota
    Murai, Yoshio
    Yamazaki, Akira
    Obana, Koichiro
    Ito, Yoshihiro
    Iwakiri, Kazuhiro
    Miura, Ryo
    Machida, Yuya
    Mochizuki, Kimihiro
    Uehira, Kenji
    Tahara, Michitaka
    Kuwano, Asako
    Amamiya, Shin'ichiro
    Kodaira, Shuichi
    Takanami, Tetsuo
    Kaneda, Yoshiyuki
    Iwasaki, Takaya
    EARTH PLANETS AND SPACE, 2008, 60 (11): : 1121 - 1126
  • [7] Precise aftershock distribution of the 2007 Chuetsu-oki Earthquake obtained by using an ocean bottom seismometer network
    Masanao Shinohara
    Toshihiko Kanazawa
    Tomoaki Yamada
    Kazuo Nakahigashi
    Shin’ichi Sakai
    Ryota Hino
    Yoshio Murai
    Akira Yamazaki
    Koichiro Obana
    Yoshihiro Ito
    Kazuhiro Iwakiri
    Ryo Miura
    Yuya Machida
    Kimihiro Mochizuki
    Kenji Uehira
    Michitaka Tahara
    Asako Kuwano
    Shin’ichiro Amamiya
    Shuichi Kodaira
    Tetsuo Takanami
    Yoshiyuki Kaneda
    Takaya Iwasaki
    Earth, Planets and Space, 2008, 60 : 1121 - 1126
  • [8] OCEAN-BOTTOM SEISMOMETER CAPSULE
    PROTHERO, WA
    BULLETIN OF THE SEISMOLOGICAL SOCIETY OF AMERICA, 1974, 64 (04) : 1251 - 1262
  • [9] ACOUSTIC RELEASE OCEAN-BOTTOM SEISMOMETER (ERI-AR81)
    NAGUMO, S
    KASAHARA, J
    KORESAWA, S
    MURAKAMI, H
    BULLETIN OF THE EARTHQUAKE RESEARCH INSTITUTE-UNIVERSITY OF TOKYO, 1982, 57 : 125 - 132