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Seismic imaging of small-scale geological body using diffraction wave based on SVD algorithm |
Jun XU1,2, Bin LIU1,2( ), Qing-Xian ZHAO1,2 |
1. Key Laboratory of Marine Mineral Resource,Ministry of Natural Resource,Guangzhou 510760,China 2. Guangzhou Marine Geological Survey,Guangzhou 510760,China |
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Abstract Diffraction originating from small-scale bodies is treated as noise in routine processing;however,it contains much information about the small-scale geological bodies,which may improve the resolution of the image.The first step of diffraction imaging is separating diffraction from the full record,since the energy of the diffraction is much weaker than the reflection.In this paper,the authors studied diffraction imaging which was separated directly on shot gather by using SVD algorithm.Compared with other separation methods,the theory and achievement of the separation directly on shot gather are easier.Numerical results show that SVD can separate diffraction from the full record well,even when noise is added to the data.The key of the method is to solve the problem as to which parts of the singular values should be intercepted while the remains could be used to reconstruct the wave-field,which requires testing various kinds of data.The results of the diffraction wave imaging are useful for the identification of small-scale geological bodies,and integrating diffraction wave imaging results with full wave imaging results can lead to a better interpretation.
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Received: 21 August 2018
Published: 25 October 2019
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Corresponding Authors:
Bin LIU
E-mail: liugele@163.com
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numerical model for small-scale bodies
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小尺度地质体 | 横向尺度/m | 纵向尺度/m | 速度/(m·s-1) | 1 | 15 | 20 | 1800 | 2 | 20 | 20 | 1800 | 3 | 30 | 20 | 1800 | 4 | 40 | 20 | 1800 | 5 | 50 | 20 | 1800 |
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Parameters of the small-scale bodies
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Shot record before (a) and after (b) NMO
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The distribution of singular value after SVD used in 8th shot record
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The distribution of individual singular value's energy(a) and accumulative singular value's energy(b) in 8th shot record
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Diffraction wave extracted with different cut-off parameters a—60%;b—70%;c—80%;d—90%
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The original 8th shot record (a),diffraction (b) and the difference (c) between figure a and figure b
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The separation result when 25% noise is presented
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The separation result when 50% noise is presented
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The separation result when 100% noise is presented
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Full wave-field imaging(a) and diffraction imaging for data with(c) and without(b) noise
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[1] |
鲁新便 . 岩溶缝洞型碳酸盐岩储集层的非均质性[J]. 新疆石油地质, 2003,24(4):360-362.
|
[1] |
Lu X B . Heterogeneity of Karst-Vuggy Carbonate reservoir rocks[J]. Xinjiang Petroleum Geology, 2003,24(4):360-362.
|
[2] |
陈明政, 邓光校, 朱生旺 , 等. 绕射波分离成像技术在塔河油田碳酸盐岩地震弱反射储层预测中的应用[J]. 石油物探, 2015,54(2):234-240.
|
[2] |
Cheng M Z, Deng G X, Zhu S W , et al. Application of diffraction wave separation and imaging technique in weak seismic reflection of carbonate reservoir prediction in Tahe Oilfield[J]. Geophysical Prospecting for Petroleum, 2015,54(2):234-240.
|
[3] |
尹奇峰, 潘冬明, 于景邨 , 等. 煤矿陷落柱地震识别技术研究[J]. 地球物理学进展, 2012,27(5):2168-2174.
|
[3] |
Yin Q F, Pan D M, Yu J C , et al. Research on seismic identification technique of coal mine collapse column[J]. Progress in Geophys. (in Chinese), 2012,27(5):2168-2174.
|
[4] |
杨德义, 王赟, 王辉 . 陷落柱的绕射波[J]. 石油物探, 2000,39(4):82-86.
|
[4] |
Yang D Y, Wang Y, Wang H . Diffraction waves from fallen pillars[J]. Geophysical Prospecting For Petroleum, 2000,39(4):82-86.
|
[5] |
叶红星 . 基于地震属性分析的红柳林煤矿采空区解释[J]. 煤田地质与勘探, 2014,42(3):87-91.
|
[5] |
Ye H X . The interpretation of the gob based on the analysis of seismic attribute in Hongliulin coal mine[J]. Coal Geology & Exploration, 2014,42(3):87-91.
|
[6] |
王志辉, 吕庆田 . 金属矿地震绕射波分离与成像——以庐枞矿集区和钦杭成矿带为例[J]. 地球学报, 2017,38(s1):79-82.
|
[6] |
Wang Z H, Lyu Q T . Separation and imaging of seismic diffractions on metal deposit:two cases in Luzong deposit concentration area and Qinhang metallogenic belt[J]. Acta Geoscientica Sinica, 2017,38(s1):79-82.
|
[7] |
刘文伍, 田庆福, 余森林 . 地震绕射波法在管线探测上的数值模拟研究[J]. 城市勘测, 2017,( 1):158-163.
|
[7] |
Liu W W, Tian Q F, Yu S L . The numerical simulation research of seismic diffracted wave method on the pipeline detection[J]. Urban Geotechnical Investigation & Surveying, 2017,( 1):158-163.
|
[8] |
李晓峰, 孔雪, 林娟 . 绕射波分离成像技术在断裂识别中的应用[J]. 新疆石油地质, 2017,38(3):369-374.
|
[8] |
Li X F, Kong X, Lin J . Application of diffracted-wave separation imaging technology in fracture identification[J]. Xinjiang Petroleum Geology, 2017,38(3):369-374.
|
[9] |
徐德奎, 何玉, 郑江峰 . 基于绕射波的断层识别方法应用[J]. 物探与化探, 2016,40(4):783-787.
|
[9] |
Xu D K, He Y, Zheng J F . A method based on diffraction wave for fault identification and its application[J]. Geophysical and Geochemical Exploration, 2016,40(4):783-787.
|
[10] |
Kozlov E, Barasky N . Imaging scattering objects masked by specular reflections [C]//Expanded Abstracts of the 74 th Annual SEG Meeting,Society of Exploration Geophysicists , 2004.
|
[11] |
Khaidukov V, Landa E and Moster T J .Diffraction imaging by focusing-defocusing:An outlook on seismic super resolution[J]. Geophysics, 2004,69(6):1478-1490.
|
[12] |
赵娟娟, 李德春, 匡伟 , 等. F_K滤波方法分离地震绕射波和反射波[J]. 能源技术与管理, 2010,7(3):16-17.
|
[12] |
Zhao J J, Li D C, Kuang W , et al. Separation of diffraction and reflections by means of F-K filtering method[J]. Energy Technology and Management, 2010,7(3):16-17.
|
[13] |
蒋波, 赵金玉, 邬达理 , 等. 基于反射波层拉平的绕射波分离与成像方法[J]. 石油物探, 2014,35(2):137-141.
|
[13] |
Jiang B, Zhao J Y, Wu D L , et al. A method for diffraction wave separation and imaging based on horizon-flattening of reflection waves[J]. Geophysical Prospecting for Petroleum, 2014,35(2):137-141.
|
[14] |
孔雪, 李振春, 黄建平 , 等. 基于平面波记录的绕射目标成像方法研究[J]. 石油地球物理勘探, 2012,47(4):674-681.
|
[14] |
Kong X, Li Z C, Huang J P , et al. Diffracting objective imaging based on plane wave record[J]. Oil Geophysical Prospecting, 2012,47(4):674-681.
|
[15] |
黄建平, 李振春, 孔雪 , 等. 基于PWD的绕射波波场分离成像方法综述[J]. 地球物理学进展, 2012,27(6):2499-2510.
|
[15] |
Huang J P, Li Z C, Kong X , et al. The review of the wave field separation method about reflection and diffraction based on the PWD[J]. Progress in Geophys. (in Chinese), 2012,27(6):2499-2510.
|
[16] |
朱生旺, 李佩, 宁俊瑞 . 局部倾角滤波和预测反演联合分离绕射波[J]. 地球物理学报, 2013,56(1):280-288.
|
[16] |
Zhu S W, Li P, Ning J R . Reflection/diffraction separation with a hybrid method of local dip filter and prediction inversion[J]. Chinese J. Geophys. (in Chinese), 2013,56(1):280-288.
|
[17] |
Taner M T, Fomel S, landa E .Separation and imaging of seismic diffraction using plane-wave decomposition [C]//Expanded Abstracts of the 76 th Annual SEG Meeting,Society of Exploration Geophysicists , 2006.
|
[18] |
Moser T J, Howard C B . Diffraction imaging in depth[J]. Geophysical Prospecting, 2008,56:627-641.
|
[19] |
Berkovitch A, Belfer I, Hassin Y , et al. Diffraction imaging by multifocusing[J]. Geophysics, 2009,74(6):75-81.
|
[20] |
Dell S, Gajewski D . Diffraction imaging based on common-reflection-surface attributes [C] //San Antonio:Expanded Abstracts of the 81 st Annual SEG Meeting,Society of Exploration Geophysicists , 2011.
|
[21] |
姜宇航, 刘财, 宋超, 等.基于SVD 的叠后地震资料随机噪声分离方法[J]. 世界地质, 2016,35(2):543-548.
|
[21] |
Jiang Y H, Liu C, Song C , et al. Method on random noise separation from poststack seismic data based on SVD[J]. Global Geology, 2016,35(2):543-548.
|
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