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Passive-source ocean bottom seismograph (OBS) array experiment in South China Sea and data quality analyses
引用本文:Chenguang Liu,;Qingfeng Hua,;Yanliang Pei,;Ting Yang,;Shaohong Xia,;Mei Xue,;Ba Manh Le,;Da Huo,;Fang Liu,;Haibo Huang. Passive-source ocean bottom seismograph (OBS) array experiment in South China Sea and data quality analyses[J]. 科学通报(英文版), 2014, 59(33): 4524-4535. DOI: 10.1007/s11434-014-0369-4
作者姓名:Chenguang Liu,  Qingfeng Hua,  Yanliang Pei,  Ting Yang,  Shaohong Xia,  Mei Xue,  Ba Manh Le,  Da Huo,  Fang Liu,  Haibo Huang
作者单位:[1]College of Marine Geosciences, Ocean University of China,Qingdao 266100, China; [2]The First Institute of Oceanography, State OceanicAdministration, Qingdao 266061, China; [3]State Key Laboratory of Marine Geology, Tongji University,Shanghai 200092, China; [4]South China Sea Institute of Oceanology, Chinese Academy ofSciences, Guangzhou 510301, China
基金项目:supported by National Natural Science Foundation of China(91128209 and 40176019);StateKey Laboratory of Marine Geology at Tongji University(MG20130306)
摘    要:Long-term passive source ocean bottom seis- mograph (OBS) observatory is challenging due to various technical difficulties. In order to gain experience in this field, and to reveal the lithospheric structure beneath the extinct ridge in the central South China Sea (SCS), we carried out a passive source OBS array experiment, which includes 18 OBSs, in the deep portion of SCS. Here we present the instrumentation, the OBS deployment and recovery of this experiment, and more importantly, the data quality evaluated by a number of approaches. Through processing and inspecting waveforms from global, regional and local earthquakes, we find that most of recovered OBSs have good data quality with discernible main phases. The ambient noise analyses of OBS recordings show that their noise is higher than the global average, and the horizontal component is noisier than the vertical, indicating current impacts on horizontal components are more severe. In the period range of 5-10 s, there is a noise notch for the SCS OBSs, and noise levels of horizontal components are comparable to the vertical. This feature, which is not seen at OBS stations in open ocean, suggests the distant sources for double frequency microseism in this marginal sea are not significant. In addition, we successfully determined the orientations for 7 OBSs by investigating their Rayleigh wave polarizations; and we demonstrated the dispersion feature of Rayleigh waves through the frequency-time analysis. Finally, we summarized lessons learned from this experiment regarding the passive source OBS investiga- tions in SCS.

关 键 词:海底地震仪  中国南海  OBS  被动源  实验  质量分析  阵列  水平分量

Passive-source ocean bottom seismograph (OBS) array experiment in South China Sea and data quality analyses
Chenguang Liu,Qingfeng Hua,Yanliang Pei,Ting Yang,Shaohong Xia,Mei Xue,Ba Manh Le,Da Huo,Fang Liu,Haibo Huang. Passive-source ocean bottom seismograph (OBS) array experiment in South China Sea and data quality analyses[J]. Chinese science bulletin, 2014, 59(33): 4524-4535. DOI: 10.1007/s11434-014-0369-4
Authors:Chenguang Liu  Qingfeng Hua  Yanliang Pei  Ting Yang  Shaohong Xia  Mei Xue  Ba Manh Le  Da Huo  Fang Liu  Haibo Huang
Affiliation:1. College of Marine Geosciences, Ocean University of China, Qingdao, 266100, China
3. The First Institute of Oceanography, State Oceanic Administration, Qingdao, 266061, China
2. State Key Laboratory of Marine Geology, Tongji University, Shanghai, 200092, China
4. South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, China
Abstract:Long-term passive source ocean bottom seismograph (OBS) observatory is challenging due to various technical difficulties. In order to gain experience in this field, and to reveal the lithospheric structure beneath the extinct ridge in the central South China Sea (SCS), we carried out a passive source OBS array experiment, which includes 18 OBSs, in the deep portion of SCS. Here we present the instrumentation, the OBS deployment and recovery of this experiment, and more importantly, the data quality evaluated by a number of approaches. Through processing and inspecting waveforms from global, regional and local earthquakes, we find that most of recovered OBSs have good data quality with discernible main phases. The ambient noise analyses of OBS recordings show that their noise is higher than the global average, and the horizontal component is noisier than the vertical, indicating current impacts on horizontal components are more severe. In the period range of 510 s, there is a noise notch for the SCS OBSs, and noise levels of horizontal components are comparable to the vertical. This feature, which is not seen at OBS stations in open ocean, suggests the distant sources for double frequency microseism in this marginal sea are not significant. In addition, we successfully determined the orientations for 7 OBSs by investigating their Rayleigh wave polarizations; and we demonstrated the dispersion feature of Rayleigh waves through the frequency-time analysis. Finally, we summarized lessons learned from this experiment regarding the passive source OBS investigations in SCS.
Keywords:Ocean bottom seismograph  Passive-source OBS observatory  South China Sea  Seafloorseismic ambient noise  Rayleigh wave dispersion
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