A processing for ocean-bottom multicomponent data with seismic interferometry: a case study of southern offshore in Korea

IF 0.6 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Exploration Geophysics Pub Date : 2023-03-20 DOI:10.1080/08123985.2023.2183115
Jeong-Mun Yu, Byoung-Yeop Kim, Y. Joo
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引用次数: 0

Abstract

Marine seismic surveys are widely used to explore oil and gas resources and monitor CO2 storage. In particular, ocean-bottom seismic surveys allow the acquisition of high-quality data without the influence of the water-layer environment. However, ocean-bottom seismic surveys are more expensive than streamer surveys and P-wave survey data exhibit free-surface multiples, which are persistent problems. PZ summation can be applied to process multicomponent ocean-bottom seismic data, which effectively reduces ghosting and water-layer reverberation by combining hydrophone and vertical geophone data. In this study, we processed and analysed ocean-bottom cable data from a shallow gas area offshore from Korea. In our field-survey simulation, PZ summation was applied to the synthetic data to separate up-going and down-going wavefields and attenuate free-surface multiples. In addition, improved image can be obtained compared to conventional stack section by applying seismic interferometry to the acquired up-going wavefield data.
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利用地震干涉法处理海底多分量数据——以韩国南部近海为例
海洋地震勘探被广泛用于勘探石油和天然气资源以及监测二氧化碳储量。特别是,海底地震勘测可以在不受水层环境影响的情况下获得高质量的数据。然而,海底地震勘测比拖缆勘测更昂贵,P波勘测数据显示出自由表面倍数,这是一个持续存在的问题。PZ求和可以用于处理多分量海底地震数据,通过将水听器和垂直检波器数据相结合,有效地减少了重影和水层混响。在这项研究中,我们处理和分析了韩国近海浅层天然气区的海底电缆数据。在我们的野外调查模拟中,将PZ求和应用于合成数据,以分离上行和下行波场并衰减自由表面倍数。此外,通过将地震干涉测量应用于所获取的上行波场数据,与传统的叠加剖面相比,可以获得改进的图像。
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来源期刊
Exploration Geophysics
Exploration Geophysics 地学-地球化学与地球物理
CiteScore
2.30
自引率
0.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: Exploration Geophysics is published on behalf of the Australian Society of Exploration Geophysicists (ASEG), Society of Exploration Geophysics of Japan (SEGJ), and Korean Society of Earth and Exploration Geophysicists (KSEG). The journal presents significant case histories, advances in data interpretation, and theoretical developments resulting from original research in exploration and applied geophysics. Papers that may have implications for field practice in Australia, even if they report work from other continents, will be welcome. ´Exploration and applied geophysics´ will be interpreted broadly by the editors, so that geotechnical and environmental studies are by no means precluded. Papers are expected to be of a high standard. Exploration Geophysics uses an international pool of reviewers drawn from industry and academic authorities as selected by the editorial panel. The journal provides a common meeting ground for geophysicists active in either field studies or basic research.
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