Ordovician limestone aquosity prediction using nonlinear seismic attributes: Case from the Xutuan coal mine
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  • 作者:Yaping Huang (1)
    Shouhua Dong (2)
    Jianhua Geng (1)
  • 关键词:nonlinear seismic attribute ; limestone ; aquosity ; prediction
  • 刊名:Applied Geophysics
  • 出版年:2009
  • 出版时间:December 2009
  • 年:2009
  • 卷:6
  • 期:4
  • 页码:359-366
  • 全文大小:812KB
  • 参考文献:1. Chopra, S., and Marfurt, K. J., 2005, Seismic attributes: a historical perspective: Geophysics, 70(5), 3SO鈥?8SO. CrossRef
    2. Chopra, S., and Marfurt, K. J., 2006a, Curvature attribute applications to 3D surface seismic data: CSEG Recorder, 31(7), 44鈥?6.
    3. Chopra, S., and Marfurt, K. J., 2006b, Seismic attributes: a promising aid for geological prediction: CSEG Recorder (Special Edition), 115鈥?26.
    4. Chopra, S., and Marfurt, K. J., 2007, Volumetric curvature attributes for fault/fracture characterization: First Break, 25, 19鈥?0.
    5. Dong, S. H., Ma, Y. L., and Zhou, M., 2004, Forward modeling of relationship between coal seam thickness and seismic attribute of amplitude and frequency: Journal of China University of Mining and Technology, 33(1), 29鈥?2.
    6. Dong, S. H., 2008, Test on elastic anisotropic coefficients of gas coal: Chinese Journal of Geophysics, 51(3), 254鈥?59.
    7. Ge, L. T., and Ye, G. J., 2001, Hydrogeology of China Coal: Coal Industry Press, Beijing, China.
    8. Guo, G. M., 2005, The research and application of the seismic attributes-in the region of Zhaohu nose-like structure of Weibei: PhD Thesis, Southwest Petroleum Institute.
    9. Gui, Z. H., and Han, F. Q., 2004, Wavelet packet-maximum entropy spectrum estimation and its application in turbine鈥檚 fault diagnosis: Automation of Electric Power Systems, 28(2), 62鈥?6.
    10. Grassberger, P., and Procaccia, I., 1983, Estimation of the Kolmogorov entropy from a chaotic signal: Physical Review Letters, 28, 2591鈥?593.
    11. Kantz, H., 1994, A robust method to estimate the maximal Lyapunov exponent of a time series: Physics Letters A, 185(1), 77鈥?7. CrossRef
    12. Lawrence, P., 1998, Seismic attributes in the characterization of small-scale reservoir faults in Abqaiq Field: The Leading Edge, 17, 521鈥?25. CrossRef
    13. Li, X. R., and Meng, X. D., 2004, Study on fractured karst zone with seismological method: North China Earthquake Sciences, 22(4), 11鈥?2.
    14. Liu, J. L., and Marfurt, K. J., 2007, Instantaneous spectral attributes to detect channels: Geophysics, 72, 23鈥?1. CrossRef
    15. Liu, X. B., Lin, J. C., and Liu, C. M., 2002, Present conditions and prospects of the researches on seismic reservoir: Acta Geoscientia Sinica, 23(1), 73鈥?8.
    16. Lue, Y. X., 2001, Studying geological significance of seismic attributions use the model technology: Geophysical and Gochemical Exploration, 25(3), 191鈥?97.
    17. Rosenstein, M. T., Collins, J. J., and De Luca, C. J., 1993, A practical method for calculating largest Lyapunov exponents from small data sets: Physica D, 65(1/2), 117鈥?33. CrossRef
    18. Sukmono, S., 2007, Application of multi-attribute analysis in mapping lithology and porosity in the Pematang-Sihapas groups of Central Sumatra Basin, Indonesia: The Leading Edge, 26(2), 120鈥?31. CrossRef
    19. Wang, Y. G., Li, Z. C., and Shao, Y., 2000, Reservoirs using seismic data predict fracture zone: Petroleum University (Natural Science Edition), 24(4), 79鈥?2.
    20. Wang, Y. H., and Wen, S., 1996, China coal mine flood prevention and control. Beijing: Coal Industry Press, China, 95鈥?10.
    21. Wu, D. K., 1995, Fractal, chaos and catastrophe theory predict oil and gas and applied research: PhD Thesis, Chengdu University of Technology.
    22. Xu, C. B., Qian, J., and Sun, L. X., 2008, Research on seismic interpretation method of karst 鈥?fractured zone: Chinese Journal of Engineering Geophysics, 5(2), 940鈥?51.
    23. Yang, D. Q., Jie, M. X., and Wang, Z., 2002, The possibility of detecting water in the Ordovician carbonate with objective seismic exploration: Journal of Coal Society, 27(1), 36鈥?0.
    24. Yi, C. X., 1995, Nonlinear science and its application in the geosciences: Meteorological Press, Beijing, 14鈥?2.
    25. Zhang, X. D., 1996, Time series analysis of the higher-order statistics method: Tsinghua University Press, Beijing, 1鈥?0.
  • 作者单位:Yaping Huang (1)
    Shouhua Dong (2)
    Jianhua Geng (1)

    1. School of Ocean and Earth Science, TongJi University, Shanghai, 200092, China
    2. School of Resource and Earth Science, China University of Mining and Technology, Xuzhou, 221008, China
  • ISSN:1993-0658
文摘
Ordovician limestone water is the main source of water inrush in North China coal mines. In this paper, we analyze the characteristic of three kinds of nonlinear seismic attributes, such as the largest lyapunov exponent, fractal dimension and entropy and introduce their calculation methods. Taking the 81st and 82nd coal districts in the Xutuan coal mine as examples, we extract the three seismic attributes based on the 3D prestack migration seismic data of this area, which can display the Ordovician limestone fracture distribution in the mine. We comprehensively analyzed the three nonlinear seismic attributes and compared the results with transient electromagnetic exploration results and determined the possible Ordovician limestone aquosity distribution. This demonstrated that the nonlinear seismic attributes technology is an effective approach to predict the aquosity of Ordovician limestone.

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