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基于背景噪声互相关技术的海底地震仪的时钟校正方法在西南印度洋脊的应用
引用本文:柳云龙,刘财,陶春辉,姚华建,丘磊,王奡,阮爱国,王汉闯,周建平,李怀明,董传万.基于背景噪声互相关技术的海底地震仪的时钟校正方法在西南印度洋脊的应用[J].海洋学报(英文版),2018,37(5):39-46.
作者姓名:柳云龙  刘财  陶春辉  姚华建  丘磊  王奡  阮爱国  王汉闯  周建平  李怀明  董传万
作者单位:吉林大学, 地球探测科学与技术学院, 长春, 130026;国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,吉林大学, 地球探测科学与技术学院, 长春, 130026,吉林大学, 地球探测科学与技术学院, 长春, 130026;国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,中国科技大学地球与空间科学学院, 地震与地球内部物理实验室, 合肥, 230026,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012;中国地质大学(武汉), 地球物理与空间信息学院, 武汉, 430074,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012,国家海洋局第二海洋研究所, 海底科学重点实验室, 杭州, 310012;浙江大学, 地球科学学院, 杭州, 310027
基金项目:China Ocean Mineral Resources R & D Association Major Project under contract No. DY135-S1-01; the National Natural Science Foundation of China under contract Nos 41506078, 41706042 and 41522404; the Basic Research Foundation of Second Institute of Oceanography, SOA under contract No. JG0608.
摘    要:Seismic monitoring using ocean bottom seismometers(OBS) is an efficient method for investigating earthquakes in mid-ocean ridge far away from land. Clock synchronization among the OBSs is difficult without direct communication because electromagnetic signals cannot propagate efficiently in water. Time correction can be estimated through global positioning system(GPS) synchronization if clock drift is linear before and after the deployment. However, some OBSs in the experiments at the southwest Indian ridge(SWIR) on the Chinese DY125-34 cruise had not been re-synchronized from GPS after recovery. So we attempted to estimate clock drift between each station pairs using time symmetry analysis(TSA) based on ambient noise cross-correlation. We tested the feasibility of the TSA method by analyzing daily noise cross-correlation functions(NCFs) that extract from the data of another OBS experiment on the Chinese DY125-40 cruise with known clock drift and the same deployment site. The results suggest that the NCFs' travel time of surface wave between any two stations are symmetrical and have an opposite growing direction with the date. The influence of different band-pass filters,different components and different normalized methods was discussed. The TSA method appeared to be optimal for the hydrophone data within the period band of 2–5 s in dozens of km-scale interstation distances. A significant clock drift of ~2 s was estimated between OBSs sets through linear regression during a 108-d deployment on the Chinese cruise DY125-34. Time correction of the OBS by the ambient noise cross-correlation was demonstrated as a practical approach with the appropriate parameters in case of no GPS re-synchronization.

关 键 词:钟漂  互相关  背景噪声  海底地震仪
收稿时间:2017/9/7 0:00:00
修稿时间:2018/1/3 0:00:00

Time correction of the ocean bottom seismometers deployed at the southwest Indian ridge using ambient noise cross-correlation
LIU Yunlong,LIU Cai,TAO Chunhui,YAO Huajian,QIU Lei,WANG Ao,RUAN Aiguo,WANG Hanchuang,ZHOU Jianping,LI Huaiming and DONG Chuanwan.Time correction of the ocean bottom seismometers deployed at the southwest Indian ridge using ambient noise cross-correlation[J].Acta Oceanologica Sinica,2018,37(5):39-46.
Authors:LIU Yunlong  LIU Cai  TAO Chunhui  YAO Huajian  QIU Lei  WANG Ao  RUAN Aiguo  WANG Hanchuang  ZHOU Jianping  LI Huaiming and DONG Chuanwan
Institution:1.College of Geoexploration Science and Technology,Jilin University,Changchun,China;2.Key Laboratory of Submarine Geosciences, Second Institute of Oceanography,State Oceanic Administration,Hangzhou,China;3.Laboratory of Seismology and Physics of Earth’s Interior, School of Earth and Space Sciences,University of Science and Technology of China,Hefei,China;4.Institute of Geophysics and Geomatics,China University of Geosciences,Wuhan,China;5.School of Earth Sciences,Zhejiang University,Hangzhou,China
Abstract:Seismic monitoring using ocean bottom seismometers (OBS) is an efficient method for investigating earthquakes in mid-ocean ridge far away from land. Clock synchronization among the OBSs is difficult without direct communication because electromagnetic signals cannot propagate efficiently in water. Time correction can be estimated through global positioning system (GPS) synchronization if clock drift is linear before and after the deployment. However, some OBSs in the experiments at the southwest Indian ridge (SWIR) on the Chinese DY125-34 cruise had not been re-synchronized from GPS after recovery. So we attempted to estimate clock drift between each station pairs using time symmetry analysis (TSA) based on ambient noise cross-correlation. We tested the feasibility of the TSA method by analyzing daily noise cross-correlation functions (NCFs) that extract from the data of another OBS experiment on the Chinese DY125-40 cruise with known clock drift and the same deployment site. The results suggest that the NCFs’ travel time of surface wave between any two stations are symmetrical and have an opposite growing direction with the date. The influence of different band-pass filters, different components and different normalized methods was discussed. The TSA method appeared to be optimal for the hydrophone data within the period band of 2–5 s in dozens of km-scale interstation distances. A significant clock drift of ~2 s was estimated between OBSs sets through linear regression during a 108-d deployment on the Chinese cruise DY125-34. Time correction of the OBS by the ambient noise cross-correlation was demonstrated as a practical approach with the appropriate parameters in case of no GPS re-synchronization.
Keywords:clock drift  cross-correlation  ambient noise  OBS
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