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作 者:Yunfei YE Li-Yun FU Lijun MI Chuncai CHEN Zhenhua JIAO Hanming GU Yu WU
机构地区:[1]China National Offshore Oil Corporation Research Institute,Co.,Ltd.Beijing 100028,China [2]National Key Laboratory of Deep Oil and Gas,China University of Petroleum(East China),Qingdao 266580,China [3]China Oilfield Services Limited,Tianjin 300459,China [4]School of Geophysics and Space Information,China University of Geosciences(Wuhan),Wuhan 430074,China [5]Sinopec Geophysical Research Institute Co.,Ltd.,Nanjing 211103,China
出 处:《Science China Earth Sciences》2025年第3期683-701,共19页中国科学(地球科学英文版)
基 金:supported jointly by National Major Science and Technology Project of China (Grant No. 2016ZX05026001);Major Projects for the 14th Five-Year Plan of National Laboratory for Marine Science and Technology (Qingdao) (Grant No. 2021QNLM020001)。
摘 要:In recent years, significant advancements have been made in deep-sea broadband seismic acquisition and its support data processing technologies. Compared with traditional constant-depth flat-cable acquisition, variable-depth cable acquisition significantly differentiates frequency notches and enhances information complementarity between traces, effectively broadening the frequency band of acquired seismic data. Based on the international slanted cable technology, China has independently developed a plow-type cable seismic acquisition and imaging system: a combination of slanted and deep-deployed flat cables,along with a deghosting processing technique. This innovation optimizes the segmented depth variation of cables, further improving low-frequency response and broadening the high-frequency range. This paper extends the 2D technology into three dimensions, establishing an integrated technology system for deep-sea broadband, wide-azimuth seismic acquisition and imaging, consisting of three-ship and six-source acquisition equipments, 3D plow-type cable mat, blended acquisition design with rolling dual-random sources, and wavenumber-domain 3D deghosting techniques. Applications to two tectonic zones in the South China Sea demonstrate that the frequency band of seismic data is expanded from three octaves(8–85 Hz) by conventional acquisition and imaging methods to five octaves(2–130 Hz), significantly improving the data quality and imaging precision of deep structures. This advancement effectively supports the researches of fundamental geology, hydrocarbon accumulation,reservoir prediction, and fluid identification in deep-water basins. The successful deployment of these technologies has advanced China's deep-sea oil and gas exploration and has been generalized to more than ten international deep-sea oilfields.
关 键 词:Deep-sea oil and gas Broadband wide-azimuth 3D plow-type cable deployment Three-ship six-source blended acquisition Deghosting
分 类 号:P31[天文地球—固体地球物理学]
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