Lithologic Reservoirs ›› 2015, Vol. 27 ›› Issue (2): 92-97.doi: 10.3969/j.issn.1673-8926.2015.02.014

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Suppressing scheme of multi-frequency component industrial interference and its application

CHEN Keyang   

  1.  Research Institute of Exploration and Development , PetroChina Daqing Oilfield Company Ltd. ,Daqing 163712 , Heilongjiang , China
  • Online:2015-03-03 Published:2015-03-03

Abstract:

In order to solve the problems of the low calculating efficiency and low processing precision of the current industrial interference suppression process in industrial software, this paper presented and derived a new scheme to suppress multi-frequency component industrial interferences simultaneously. The algorithm uses a combination of cosine functions to approximate the industrial interference, and achieves automatic identification and adaptive suppression of multi-frequency component industrial interference according to the optimal approximation of least square method and the normalized cross-correlation coefficient. It was applied to theoretical synthetic model and practical seismic data in CD area of Songliao Basin. the result shows that the proposed scheme is with perfect amplitude preserved and high signal to noise ratio, therefore, the new algorithm can be an important technical guidance for high precision amplitude preserved seismic data preprocessing in mature exploration area.

Key words: deposition, jet flow, hydrodynamic, estuaries, delta front, lake

[1]凌云.地震数据采集·处理·解释·一体化实践与探索[M].北京:石油工业出版社,2007.

Ling Yun. Integrated practice and exploration of seismic data acquisition,processing and interpretation[M]. Beijing:Petroleum Industry Press,2007.

[2]Linville A F,Meek R A. Canceling stationary sinusoidal noise[J].Geophysics,1992,57(11):1493-1501.

[3]胡伟,吕小伟.压制地震资料中工业电干扰的余弦逼近法的改进及应用[J].物探与化探,2005,29(6):537-540.

Hu Wei,Lü Xiaowei. The improvement of cosine approach method and its application to remove industrial noise in seismic data [J]. Geophysical and Geochemical Exploration,2005,29(6):537-540.

[4]高少武,赵波,祝树云,等.余弦函数自适应法识别与消除单频干扰[J].石油地球物理勘探,2011,46(1):64-69.

Gao Shaowu,Zhao Bo,Zhu Shuyun,et al. Cosine function adaptive method to identify and eliminate single frequency interference[J].Oil Geophysical Prospecting,2011,46(1):64-69.

[5]高少武,罗国安,赵波,等.利用线性调频谱法识别与消除单频干扰[J].石油地球物理勘探,2010,45(6): 861-867.

Gao Shaowu,Luo Guoan,Zhao Bo,et al. Single frequency interference identification and elimination with linear adjustable spectrum method [J]. Oil Geophysical Prospecting,2010,45(6):861-867.

[6]高少武,赵波,祝树云,等.自相关法单频干扰识别与消除方法[J].地球物理学报,2011,54(3):854-861.

Gao Shaowu,Zhao Bo,Zhu Shuyun,et al. Single frequency interference identification and elimination method with autocorrelation[J]. Chinese journal of geophysics,2011,54(3):854-861.

[7]高少武,贺振华,赵波,等.时间域单频干扰波消除方法的改进[J].石油地球物理勘探,2008,43(3):270-274.

Gao Shaowu,He Zhenhua,Zhao Bo,et al. Improvement single frequency interference wave elimination method in time domain [J].Oil Geophysical Prospecting,2008,43(3):270-274.

[8]罗国安,高少武,魏庚雨,等. Chirp-Z 变换谱分析压制地震记录单频干扰[J].石油地球物理勘探,2009,44(2):166-172.

Luo Guoan,Gao Shaowu,Wei Gengyu,et al. Suppression of seismic record single frequency interference with Chirp Z transform spectrum analysis method [J]. Oil Geophysical Prospecting,2009,44 (2): 166-172.

[9]吴小培,詹长安,周荷琴,等.采用独立分量分析方法消除信号中的工频干扰[J].中国科学技术大学学报,2000,30(6):671-676.

Wu Xiaopei,Yan Changan,Zhou Heqing,et al. Using independent component analysis method to eliminate the power frequency interference signal[J]. Journal of University of Science and Technology of China,2000,30(6):671-676.

[10]步长城,赵志萍,王广勇,等.在检波点域分离 50 Hz 工业干扰[J].油气地球物理,2005,3(3):20-21.

Bu Changcheng,Zhao Zhiping,Wang Guangyong,et al. 50 Hz industrial interference separation in common receiver point domain [J]. Petroleum Geophysics,2005,3(3):20-21.

[11]李慧,王依川,张春堂,等.地震记录中工业电干扰噪声识别与压制[J].大庆石油地质与开发,2012,31(5):170-174.

Li Hui,Wang Yichuang,Zhang Chuntang,et al. Recognition and depression of the interfering noise of the industrial electricity in seismic record[J]. Petroleum Geology & Oilfield Development in Daqing,2012,31(5):170-174.

[12]陈可洋,陈树民,李来林,等.单频干扰的高精度自动识别和自适应压制方法[J].岩性油气藏,2014,26(3):109-113.

Chen Keyang,Chen Shumin,Li Lailin,et al. High-accuracy automatic identification and adaptive suppression method for single frequency interference[J]. Lithologic Reservoirs,2014,26(3):109-113.

[13]陈可洋.压制工业电干扰并行处理模块的开发与应用[J].油气地球物理,2015,13(2):1-6.

Chen Keyang. Development and application of parallel processing module on suppressing industrial interference[J]. Petroleum Geophysics. 2015,13(2):1-6.

[14]陈可洋,吴清岭,李来林,等.松辽盆地三维地震资料连片处理关键技术及其应用效果分析[J].岩性油气藏,2012,24(2):87-91.

Chen Keyang,Wu Qingling,Li Lailin,et al. 3D seismic data multisurvey joint processing key technology and its application effect analysis in SongLiao Basin[J]. Lithologic Reservoirs,2012,24(2): 87-91.

[15]陈可洋,吴沛熹,杨微.扩散滤波方法在地震资料处理中的应用研究[J].岩性油气藏,2014,26(1):117-122.

Chen Keyang,Wu Peixi,Yang Wei. Application study on the diffusion filtering method in the seismic data processing[J]. Lithologic Reservoirs, 2014,26(1):117-122.

[16]陈可洋,杨微,吴清岭,等.地震反射波与散射波波场分离方法初探[J].岩性油气藏,2013,25(2):76-81.

Chen Keyang,Yang Wei,Wu Qingling,et al. Preliminary study on seismic reflection wave and scattered wave wavefield separating scheme[J]. Lithologic Reservoirs,2013,25(2):76-81.

[17]陈可洋,吴清岭,林春华,等.含压实效应的沙丘曲线静校正方法及其应用[J].矿业工程研究,2011,26(4):64-68.

Chen Keyang,Wu Qingling,Lin Chunhua,et al. Sand dune curve static method considering compaction effect and its application[J].Mineral Angineering Research,2011,26(4):64-68.

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