谱蓝化,匹配追踪,叠后地震,优化谱蓝化算子


," /> 谱蓝化,匹配追踪,叠后地震,优化谱蓝化算子


,"/> <p class="MsoNormal"> #br# <p class="MsoNormal"> Application of Matching Pursuit Frequency-Division Spectrum Blueing in Post-Stack Seismic Frequency Enhancement

Journal of Jilin University(Earth Science Edition) ›› 2025, Vol. 55 ›› Issue (2): 646-656.doi: 10.13278/j.cnki.jjuese.20230331

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Application of Matching Pursuit Frequency-Division Spectrum Blueing in Post-Stack Seismic Frequency Enhancement

Jin Xuebin1,2, Li Bingxi3, Zhang Zhenguo1,2, Lei Maosheng3, An Lishuang1,2, Ding Kai4   

  1. 1. College of Mining, Liaoning Technical University, Fuxin 123000, Liaoning, China

    2. Key Laboratory of Geological Guarantee for Green Development of Mineral Resources of Liaoning Province, Fuxin 123000,

    Liaoning, China

    3. Beijing Tianyuan Yunkai Technology Co., Ltd., Beijing 100085, China

    4.  Sinopec Jingwei Zhongyuan Measurement and Control Company, Puyang 457001, Henan, China

  • Online:2025-03-26 Published:2025-05-10
  • Supported by:
    Supported by the  Natural Science Foundation of Heilongjiang Province  (LH2020D008)

Abstract: The traditional spectral blueing frequency broadening methods have a limitation in the calculation of spectral blueing operators, leading to poor effects when applied to post-stack seismic frequency enhancement. To address this, a frequency-division spectral blueing broadening technique based on matching pursuit is proposed. Firstly, the matching pursuit method is employed to accurately divide the post-stack seismic data into multiple frequency-split seismic bodies. Then, during the calculation of the spectral blueing operators for each frequency band, a weighting approach is introduced to determine the weights of the optimized spectral blueing operators for each frequency band based on the differences in energy across different frequency bands. Finally, the optimized spectral blueing operators are convolved with seismic reflection coefficients to obtain high-resolution seismic data. Actual tests on post-stack seismic data demonstrate that, compared with traditional spectral blueing methods, the frequency enhancement method proposed in this paper improves the high-frequency component information of post-stack seismic data. After frequency expansion, there are more seismic event axes and  the  resolution is higher. Through a series of operations such as attribute extraction, well seismic calibration, and inversion of the seismic data before and after processing, it is verified that the high-frequency components of the frequency-enhanced seismic data are effective and can more accurately delineate faults and identify thin-layer sand bodies.

Key words: spectral blueing, matching pursuit, post-stack seismic, optimized spectral blueing operators

CLC Number: 

  • P631.4
[1] Feng Zhihui, Zhang Wenchun, Li Xiangqun, Sun Guangli, Liu Cai. Application of High-Precision Frequency Division Coherency Enhancement Technique in Micro-Fault Identification [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(5): 1571-1579.
[2] Liu Xia, Chen Chen, Zhao Yuting, Wang Xin. Multi-Wavelet Decomposition and Reconstruction Based on Matching Pursuit Algorithm Fast Optimized by Particle Swarm [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(6): 1855-1861.
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