全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

近地表速度建模研究现状及发展趋势

DOI: 10.11867/j.issn.1001-8166.2014.10.1138, PP. 1138-1148

Keywords: 走时层析,全波形反演,多尺度,联合反演策略,高精度

Full-Text   Cite this paper   Add to My Lib

Abstract:

速度是反映地下构造和岩石物性的一个重要参数。近地表速度的精度直接影响勘探区域的地震资料静校正、速度分析以及最终成像的效果。目前常用的近地表建模方法和技术多基于高频近似的射线理论,不能满足当前近地表精细建模的需求。通过对微测井、折射波法、面波法、走时层析以及全波形反演等近地表建模技术的全面调研,总结了它们的适应性、优缺点及研究应用现状,指出联合走时层析与波形反演的技术方法在时间域分步骤、多尺度的反演策略是近地表高精度建模的有效手段和发展方向,能有效提高建模精度,适应高精度成像要求。该方法在近地表的矿产普查、工程物探、油气勘探等领域存在广泛的应用前景。

References

[1]  C, Noble M,Chauris H,et al.First-arrival traveltime tomography based on the adjoint-state method[J].Geophysics,2009,74(6):WCB1-WCB10.
[2]  M J. Wave-equation tomography[J].Geophysics, 1992, 57:15-26.
[3]  F A, Hung S H, Nolet G.Fréchet kernels for finite-frequency travel-times-I. Theory[J]. Geophysical Journal International,2000,141(1): 157-174.
[4]  G T, Quintus-Bosz A.Wavepath eikonal traveltime inversion: Theory[J].Geophysics, 1993, 58(9): 1 314-1 323.
[5]  Y, Schuster G T. Wave-equation traveltime inversion[J].Geophysics, 1991,56(5):645-653.
[6]  D W, Peterson J E, Jr Ernest L,et al. Beyond ray tomography: Wavepaths and Fresnel volumes[J].Geophysics,1995,60(6): 1 790-1 804.
[7]  V, Soares J.Fresnel volume ray tracing[J].Geophysics,1992,57:902-915.
[8]  L,Zhang W, Zhang J, et al. 3D wave-ray traveltime tomography for near-surface imaging[C]//83th Annual International Meeting, SEG, Expanded Abstracts, Houston, American,2013:1 749-1 753.
[9]  A. Inversion of seismic reflection data in the acoustic approximation[J].Geophysics, 1984,49(8): 1 259-1 266.
[10]  Huazhong,Wang Xiongwen,Wang Xiwen.Analysis of the basic problems of seismic wave inversion[J].Lithologic Reservoirs, 2012,24(6):1-9.[王华忠,王雄文,王喜文.地震波反演的基本问题分析[J].岩性油气藏,2012,24(6):1-9.]
[11]  J,Operto S. An overview of full-waveform inversion in exploration geophysics[J].Geophysics, 2009, 74(6):WCC1-WCC26.
[12]  Aifei,Yu Wenhui,Zhou Huawei.Progress in the frequency-domain full waveform inversion method[J].Progress in Geophysics,2010,25(3):982-993.[卞爱飞,於文辉,周华伟.频率域全波形反演研究进展[J].地球物理学进展,2010,25(3):982-993.]
[13]  P. The seismic inverse problem as a sequence of before stack migrations[C]// Conference on Inverse Scattering:Theory and Applications. Philadelphia: SIAM,1984:206-220.
[14]  C, Saleck F M, Zaleski S, et al. Multiscale seismic waveform inversion[J].Geophysics, 1995, 60(5): 1 457-1 473.
[15]  R G. Frequency-domain elastic modeling by finite differences: A tool for cross hole seismic imaging[J].Geophysics, 1990,55(5):626-632.
[16]  R G. Seismic waveform inversion in the frequency domain, part I: Theory and verification in a physic scale model[J].Geophysics,1999,64(3):888-901.
[17]  R E. A review of the adjoint-state method for computing the gradient of a functional with geophysical applications[J].Geophysical Journal International, 2006, 167(2):495-503.
[18]  O,Virieux J, Tarantola A. Two-dimensional nonlinear inversion of seismic waveform:Mumeical results[J]. Geophysics, 1986,51(7):1 387-1 403.
[19]  P. Nonlinear two-dimensional elastic inversion of multi-offset seismic data[J].Geophysics, 1987,52(9):1 211-1 228.
[20]  R, Sams M. Reconciliation of cross hole seismic velocities with well information in a layered sedimentary environment[J].Geophysics, 1996, 61(2):549-560.
[21]  R, Shin C, Hicks G. Gauss-Newton and full Newton methods in frequency-space seismic waveform inversion[J].Geophysical Journal international, 1998, 133(2):341-362.
[22]  L, Barkved O I, Dellinger J, et al. Full waveform inversion: The next leap forward in imaging at Valhall[J].First Break, 2010,28(1): 65-70.
[23]  R, Perkins C. Full waveform inversion of a deep water ocean bottom seismometer dataset[J]. First Break, 2010,28(1): 71-78.
[24]  G, Etieen V, Castellanos C, et al. Assessment of 3d acoustic isotropic full waveform inversion of wide-azimuth obc data from valhall[C]//Expanded Abstracts of 82th Annual International Meeting, SEG, Expanded Abstracts, Las Vegas, America, 2012:1-6.
[25]  C.Laplace-domain full-waveform inversion of seismic data lacking low-frequency information[J].Geophysics, 2012, 77(5):199-206.
[26]  R, Baeten G, Villem J. Full waveform inversion and distance separated simultaneous sweeping: A study with a land seismic data set[J].Geophysical Prospecting, 2012, 60(4):733-747.
[27]  G, Fang W, Jia C, et al. Full waveform inversion technology and its application[J].Geophysical Prospecting for Petroleum,2013,51(SI):90-96.
[28]  Guanghui, Jia Chunmei, Xia Hongrui, et al. Implementation and validation of 3D acoustic full waveform inversion[J].Geophysical Prospecting for Petroleum,2013, 52(4):417-425.[胡光辉,贾春梅,夏洪瑞,等.3D声波全波形反演的实现及应用[J].石油物探,2013,52(4):417-425.]
[29]  Qinyong, Hu Guanghui, Wang Lixin. Research status and development trend of full waveform inversion[J].Geophysical Prospecting for Petroleum, 2014,53(1):78-84.[杨勤勇,胡光辉,王立歆.全波形反演研究现状与发展趋势[J].石油物探,2014,53(1):78-84.]
[30]  J, Leeds A, Buddensiek M, et al. Early arrival waveform tomography on near-surface refraction data[J].Geophysics, 2006, 71(4): U47-U57.
[31]  A R. Fourth-order finite-difference P-SV seismograms[J].Geophysics, 1988, 53(11):1 425-1 437.
[32]  J. A perfectly matched layer for the absorption of electromagnetic waves[J]. Journal of Computational Physics, 1994,114: 185-200.
[33]  W, Liu Q. Perfectly matched layers for elastrodynamics[J]. Journal of Computational Acoustics, 1996, 4:341-359.
[34]  Y, He J Q, Liu Q. The application of the perfectly matched layer in numerical modeling of wave propagation in poroelastic media[J].Geophysics, 2001,66: 1 258-1 266.
[35]  G, Nielson S. PML absorbing boundaries[J]. Bulletin of the Seismological Society of America, 2003, 93(2):891-903.
[36]  C, Cai W,Luo Y, et al. Acoustic wave-equation traveltime and waveform inversion of crosshole seismic data[J].Geophysics, 1995,60(3):765-773.
[37]  C, Schuster G T, Hassanzadeh S, et al. Elastic wave-equation traveltime and waveform inversion of crosshole seismic data[J].Geophysics, 1997, 62(3): 853-868.
[38]  E, Mittet R, Ursin B. Preconditioning for full-waveform inversion in viscoacoustic media[J].Geophysics, 1999,64(2): 130-145.
[39]  J, Wright S J. Numerical Optimization[M].New York: Springer-Verlag, 1999.
[40]  T, Normark E, Qin F. Dynamic smoothing in crosswell traveltime tomography[J].Geophysics, 1997, 62(1): 168-176.
[41]  S M,Yu H. Early arrival waveform inversion of shallow seismic land data[C]//83th Annual International Meeting, SEG, Expanded Abstracts, Houston, American, 2013:1 738-1 742.
[42]  L, Pratt R G. Efficient waveform inversion and imaging: A strategy for selecting temporal frequencies[J].Geophysics,2004,69(1): 231-248.
[43]  C, Valasek P, Routh P, et al. An efficient multiscale method for time-domain waveform tomography[J].Geophysics, 2009,74(6): WCC59-WCC68.
[44]  C, Schuster G T, Valasek P, et al. Applications of multiscale waveform inversion to marine data using a flooding technique and dynamic early-arrival windows[J].Geophysics, 2010, 75(6): R129-R136.
[45]  C, Valasek P, Routh P, et al. Application of multiscale waveform tomography for high-resolution velocity estimation in complex geologic environments: Canadian Foothills synthetic data example[J].The Leading Edge, 2009, 28(4): 454-456.
[46]  L R, Gold B. Theory and Application of Digital Signal Processing[M]. New Delhi: Prentice-Hall, 1975.
[47]  D W, Levy S, Whittall K P. Wavelet estimation anddeconvolution[J]. Geophysics, 1981, 46(11):1 528-1 542.
[48]  G D.Mixed-phase wavelet estimation using fourth-order cumulants[J].Geophysics, 1993, 58(7): 1 042- 1 051.
[49]  A T, White R E. Seismic wavelet estimation: A frequency domain solution to a geophysical noisy input-output problem[J].IEEE Transactionson Geoscience and Remote Sensing, 1998, 36:287-297.
[50]  J. Virtual real source[C]//77th Annual International Meeting, SEG, Expanded Abstracts, San Antonio, America, 2007:2 693-2 696.
[51]  J, White R S, Hobbs R W, et al. Seismic attenuation of Atlantic margin basalts: Observations and modeling[J].Geophysics, 2006, 71(6): B211-B221.
[52]  Y. Inverse Q-filter for seismic resolution enhancement[J].Geophysics, 2006, 71,(3): V51-V60.
[53]  Z, Ramos-Martínez J, Kelly S, et al. Refraction full-waveform inversion in a shallow water environment[C]//76th Conference and Exhibition, EAGE, Extended Abstracts, Amesterdam, Holland, 2014.
[54]  J, Keho T, Tonellot T, et al. 3D acoustic waveform inversion of land data: A case study from Saudi Arabia[C]//82th Annual International Meeting, SEG, Expanded Abstracts, Las Vegas, America, 2012: 1-5.
[55]  Liangguo, Chi Benxin, Tao Jixia, et al. Objective function behavior in acoustic full-waveform inversion[J].Chinese Journal Geophysics, 2013,56(10):3 445-3 460.[董良国,迟本鑫,陶纪霞,等.全波形反演目标函数性态[J].地球物理学报,2013,56(10):3 445-3 460.]
[56]  X. Near-surface velocity estimation by weighted early-arrival waveform inversion[C]//80th Annual International Meeting, SEG, Expanded Abstracts, Denver, America, 2010: 1 975-1 979.
[57]  M, Re S, Clementi M, et al. Near-surface characterization in using simultaneous joint inversion of refracted and surface waves—A case study[C]//76th Conference and Exhibition, EAGE, Extended Abstracts, Amesterdam, America, 2014.
[58]  D, Rovetta D, Sandoval C E, et al. 3D seismic-gravity simultaneous joint inversion for near surface velocity estimation[C]//75th Conference and Exhibition, EAGE, Extended Abstracts, 2013.
[59]  Y, Chen X, Hu H, et al. Early electromagnetic waves from earthquake rupturing: II. Validation and numerical experiments[J]. Geophysical Journal International, 2013, 192:1 308-1 323.
[60]  Xinming, Liu Shucai,Yi Hongchun,et al. The simulation research of electromagnetic wave attenuation coefficient tomography in media of complicated fault structures[J].Advances in Earth Science, 2013, 28(3): 391-397.[刘鑫明,刘树才,易洪春,等.复杂断层构造电磁波衰减系数层析成像模拟研究[J].地球科学进展, 2013, 28(3): 391-397.
[61]  Yongfeng, Guo Huaming. Hot topics and trends in the study of high arsenic groundwater[J]. Advances in Earth Science, 2013, 28(1): 51-61.[贾永锋,郭华明.高砷地下水研究的热点及发展趋势[J]. 地球科学进展, 2013, 28(1): 51-61.]
[62]  Huazhong, Liu Shaoyong, Yang Qinyong,et al.Seismic exploration strategy and inmage processing in mountain areas[J].Oil Geophysical Prospecting, 2013,48(1):151-159.[王华忠,刘少勇,杨勤勇,等.山前带地震勘探策略与成像处理方法[J].石油地球物理勘探,2013,48(1):151-159.]
[63]  Wei, Niu Fujun, Mu Yanhu. Basic research on the major permafrost projects in the Qinghai-Tibet Plateau[J]. Advances in Earth Science, 2012, 27(11): 1 185-1 191.[马巍,牛富俊,穆彦虎. 青藏高原重大冻土工程的基础研究[J]. 地球科学进展, 2012, 27(11): 1 185-1 191.]
[64]  Ning, Li Zhenchun, Sang Yunyun,et al.The research of travel time tomographic velocity modeling method on first break[J].Progressin Geophysics,2014,29(1):255-260.[秦宁,李振春,桑运云,等.初至波走时层析速度建模方法研究[J]. 地球物理学进展,2014,29(1):255-260.]
[65]  Jianyuan, Li Ning, Hou Shining,et al.Development status overview of seismic prospecting technology in loess tableland[J].Coal Geology of China,2009,21(12):72-76.[程建远,李宁,侯世宁,等.黄土塬区地震勘探技术发展现状综述[J].中国煤炭地质,2009,21(12):72-76.]
[66]  Yanmei,Liu Yuzhu,Yang Kai.Preliminary study on velocity modeling for irregular surface[J].Xinjiang Petroleum Geology, 2009,30(4):523-525.[潘艳梅,刘玉柱,杨锴.起伏地表速度建模初步研究[J].新疆石油地质,2009,30(4):523-525.]
[67]  Minghai. Application of uphole methods in the inwestigation of near surface structure[J].Progress in Exploration Geophysics, 2008,31(5): 378-382.[李明海.地面微测井在山地表层结构调查中的应用[J].勘探地球物理进展, 2008,31(5):378-382.]
[68]  Wujin, Zhang Zhilin, Zhu Yong, et al.Discussion on integrative near-surface method in Yongxin area[J]. Oil Geophysical Prospecting,2008,43(Suppl.2):70-73.[陈吴金, 张志林, 朱勇,等. 永新地区综合表层调查方法探讨[J].石油地球物理勘探, 2008,43(增刊2):70-73.]
[69]  Yunqing, Pi Jinyun, Liu Bing, et al. Study on near-surface survey by 3-component(3-C)shallow refraction[J]. Oil Geophysical Prospecting,2008,43(6):652-655.[段云卿,皮金云,刘兵,等.三分量小折射表层调查研究[J].石油地球物理勘探,2008,43(6):652-655.]
[70]  Wei,He Zhengqin, Hu Gang,et al.Detection of the shallow velocity structure with surface wave prospection method[J].Progress in Geophysics, 2013,28(4):2 199-2 206.[张维,何正勤,胡刚,等.用面波联合勘探技术探测浅部速度结构[J].地球物理学进展,2013,28(4):2 199-2 206.]
[71]  Kai, Li Zhenchun.Tomographic velocity inversion method with dual-complexity[J].Progress in Geophysics,2013,28(6):3 001-3 006.[张凯,李振春.双复杂条件下层析速度反演方法研究[J].地球物理学进展, 2013,28(6):3 001-3 006.]
[72]  Chaoying, Stewart Greenhalgh, Zhou Bing.3D ray tracing using a modified shortest-path method[J].Geophysics,2007,72(4):T27-T36.
[73]  Yunyun, Li Zhenchun,Zhang Kai.Shortest path ray tracing based on parabolic traveltime interpolation[J]. Oil Geophysical Prospecting,2013,48(3):403-409.[桑运云,李振春,张凯.基于抛物旅行时插值的最短路径射线追踪[J].石油地球物理勘探,2013,48(3):403-409.]
[74]  H. Multiscale traveltime tomography[J].Geophysics, 2003,68(5): 1 639-1 649.
[75]  Hui, Zhou Huawei, Liu Wenge. Tomographic velocity model building of the near surface with velocity-inversion interfaces: A test using the Yilmaz model[J].Geophysics, 2010, 75(6):39-47.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133