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Research on the progress of marine sparker seismic exploration |
Bin QI1, Xiang-Chun WANG1( ), Qing-Xian ZHAO2 |
1. School of Geophysics and Information Technology,China University of Geosciences(Beijing),Beijing 100083,China 2. Guangzhou Marine Geological Survey of China Geological Survey,Guangzhou 510760,China |
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Abstract Sparker is an important equipment for marine seismic exploration technology. It not only is environmentally friendly,safe and low-cost to use,but also has broad frequency advantages for data,which can improve the resolution of seismic exploration.However,in the early stage of its development,there existed some problems such as unstable signals and shallow penetration depth,which caused its development speed to slow down or even to be replaced by air gun source.Later,with the rapid development of electronic technology and data processing level,these problems have been solved very well,and it also has attracted people's attention once again.This paper reviews the development of sparker source hardware and data processing methods,summarizes the problems existing in the process of sparker source development,expounds the application effect of sparker source used by previous researchers,proposes a solution from the data processing,and predicts the future and important developing direction of the sparker source in marine seismic exploration.The authors hold that sparker source will play a much more important role in marine seismic exploration and this will have significant studying meanings for the improvement of marine seismic exploration,sparker source hardware and source data processing methods.
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Received: 28 April 2019
Published: 03 March 2020
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Corresponding Authors:
Xiang-Chun WANG
E-mail: wangxc@cugb.edu.cn
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[1] |
杜向东 . 中国海上地震勘探技术新进展[J]. 石油物探, 2018,57(3):321-331.
|
[1] |
Du X D . Progress of seismic exploration technology in offshore China[J]. Geophysical Prospecting for Petroleum, 2018,57(3):321-331.
|
[2] |
陆基孟, 王永刚 . 地震勘探原理[M]. 东营: 石油大学出版社, 2009: 63-135.
|
[2] |
Lu J M, Wang Y G . Principles of seismic exploration[M]. Dongying: Petroleum University Press, 2009: 63-135.
|
[3] |
史孝侠, 高迎慧, 孙鹞鸿 , 等. 重频脉冲下海洋电火花震源的研制[J]. 电源技术, 2013,37(4):646-649.
|
[3] |
Shi X X, Gao Y H, Sun Y H , et al. Development of an underwater sparker with repetitive pulse[J]. Chinese Journal of Power Sources, 2013,37(4):646-649.
|
[4] |
李振五 . 海洋地震震源有效能量的研究[J]. 海洋地质与第四纪地质, 1986,6(1):105-120.
|
[4] |
Li Z W . Study on effective energy of marine seismic energy source[J]. Marine Geology and Quaternary Geology, 1986,6(1):105-120.
|
[5] |
王中原, 罗明璋, 王军民 , 等. 基于物联网的电火花震源电力参数实时记录系统设计[J]. 长江大学学报:自科版, 2018,15(5):37-40.
|
[5] |
Wang Z Y, Luo M Z, Wang J M , et al. Design of real-time recording system of electric spark source power parameters based on internet of things[J]. Journal of Yangtze University:Natural Science Edition, 2018,15(5):37-40.
|
[6] |
樊爱龙, 孙鹞鸿, 徐旭哲 , 等. 单通道电火花震源及其放电实验研究[J]. 电工电能新技术, 2016,35(5):48-54.
|
[6] |
Fan A L, Sun Y H, Xu X Z , et al. Single channel electric spark source and discharge experimental study[J]. Advanced Technology of Electrical Engineering and Energy, 2016,35(5):48-54.
|
[7] |
万芃, 牟泽霖, 冯强强 . 海洋单道地震勘探震源技术[J]. 中国科技信息, 2015(8):65-67.
|
[7] |
Wan F, Mou Z L, Feng Q Q . Marine single-channel seismic exploration source technology[J]. China Science and Technology Information, 2015(8):65-67.
|
[8] |
左公宁 . 国外电火花震源应用概况[J]. 电工电能新技术, 1986(1):32-34.
|
[8] |
Zuo G N . Foreign sparker source application overview[J]. Advanced Technology of Electrical Engineering and Energy, 1986(1):32-34.
|
[9] |
裴彦良, 刘保华, 王揆洋 , 等. 智能控制复合相干电火花震源技术研究[J]. 高技术通讯, 2006,16(7):697-700.
|
[9] |
Pei Y L, Liu B H, Wang K Y , et al. Study on the technique of intelligent controlled multiplex and interferential sparker source[J]. Chinese High Technology Letters, 2006,16(7):697-700.
|
[10] |
秦曾衍, 左工宁, 王永荣 , 等. 高压强脉冲放电及其应用[M]. 北京: 北京工业大学出版社, 2000: 113-183.
|
[10] |
Qin Z Y, Zuo G N, Wang Y R , et al. High-voltage pulsed discharge and its application [M]. Beijing: Beijing University of Technology Press, 2000: 113-183.
|
[11] |
裴彦良, 王揆洋, 李官保 , 等. 海洋工程地震勘探震源及其应用研究[J]. 石油仪器, 2007,21(2):20-23.
|
[11] |
Pei Y L, Wang K Y, Li G B , et al. Application study of marine engineering seismic sources[J]. Petroleum Instruments, 2007,21(2):20-23.
|
[12] |
中国科学院电工研究所. 海洋勘探电火花震源[P]. 中国, 2009,CN200810239219.1.
|
[12] |
Institute of Electrical Engineering,Chinese Academy of Sciences. Marine exploration sparker source[P]. China, 2009,CN200810239219.1.
|
[13] |
吴学兵 . 电火花震源在浅海检波器定位中的应用研究[J]. 物探装备, 2016,26(1):12-14.
|
[13] |
Wu X B . Application study on spark source for hydrophone positioning during exploration on shallow sea[J]. Equipment for Geophysical Prospecting, 2016,26(1):12-14.
|
[14] |
吴漩流 . 大功率电火花震源的研究与设计[D]. 武汉:长江大学, 2016: 1-50.
|
[14] |
Wu X L . Research and design of high power sparker[D]. Wuhan:Yantze University, 2016: 1-50.
|
[15] |
施德丰, 王清源, 孙林 , 等. 海上浅层高分辨率地震勘探[J]. 石油地球物理勘探, 1983,18(2):134-140.
|
[15] |
Shi D F, Wang Q Y, Sun L , et al. A high resolution seismic prospecting system for marine shallow[J]. Oil Geophysical Prospecting, 1983,18(2):134-140.
|
[16] |
Mathiu J, Duchesne, Gilles B , et al. Strategies for waveform processing in sparker data[J]. Marine Geophysical Research, 2007,28:153-164.
|
[17] |
Kluesner J, Brothers D, Hart P , et al. Practical approaches to maximizing the resolution of sparker seismic reflection data[J]. Marine Geophysical Research, 2018.
|
[18] |
黄佩智, 陈首燊 . 海洋地震勘探电火花震源的研究[J]. 石油地球物理勘探, 1981,16(5):74-83.
|
[18] |
Huang P Z, Chen S S . Can the spark source for marine seismic exploration[J]. Oil Geophysical Prospecting, 1981,16(5):74-83.
|
[19] |
Anitha G, Ramana M V, Ramprasad T , et al. Shallow geological environment of Krishna-Godavari offshore,eastern continental margin of India as inferred from the interpretation of high resolution sparker data[J]. Journal of Earth System Science, 2014,123(2):329-342.
|
[20] |
于富文, 蒋辉, 杨德宽 . 电火花震源在石油勘探补天窗方面的应用[J]. 内蒙古石油化工, 2017,43(9):107-110.
|
[20] |
Yu F W, Jiang H, Yang D K . The application of spark source in complement top-opening of oil industry[J]. Inner Mongolia Petrochemical Industry, 2017,43(9):107-110.
|
[21] |
任立刚, 杨德宽 . 电火花震源在平原水域区地震采集中的应用及效果分析[J]. 地球物理学进展, 2018,33(6):2581-2587.
|
[21] |
Ren L G, Yang D K . Application and effect analysis of sparker in seismic acquisition in plain water area[J]. Progress in Geophsics, 2018,33(6):2581-2587.
|
[22] |
蒋辉, 李海军, 高斌 , 等. 电火花震源在石油地震勘探中的应用[J]. 物探装备, 2018,28(1):42-44.
|
[22] |
Jiang H, Li H J, Gao B , et al. The application of sparker source forseismic exploration[J]. Equipment for Geophysical Prospecting, 2018,28(1):42-44.
|
[23] |
冯强强, 吴衡, 赵庆献 . PPS-50kJ电火花脉冲震源应用试验[J]. 地质装备, 2016,17(3):24-25.
|
[23] |
Feng Q Q, Wu H, Zhao Q X . The application test of PPS-50kJ sparker pulse source[J]. Equipment for Geotechnical Engineering, 2016,17(3):24-25.
|
[24] |
郝小柱, 赵庆献, 裴彦良 . 用于天然气水合物勘探的大能量等离子体震源[J]. 热带海洋学报, 2017,36(1):35-40.
|
[24] |
Hao X Z, Zhao Q X, Pei Y L . Large-energy plasma seismic source for gas hydrate exploration[J]. Journal of Tropical Oceangraphy, 2017,36(1):35-40.
|
[25] |
涂伟, 宋娜, 刘飞 , 等. 电火花震源在微测井调查中的作业流程及实例[J]. 内蒙古石油化工, 2018,44(10):75-78.
|
[25] |
Tu W, Song N, Liu F , et al. Operation flow and examples of sparker source in micro-logging investigation[J]. Inner Mongolia Petrochemical Industry, 2018,44(10):75-78.
|
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