3-D Butterworth Filtering for 3-D High-density Onshore Seismic Field Data

Author:

Liao Jianping12,Liu Hexiu1,Li Weibo3,Guo Zhenwei4,Wang Lixin5,Wang Huazhong6,Peng Suping2,Hursthouse Andrew17

Affiliation:

1. Hunan Provincial Key Laboratory of Shale Gas Resource Utilization, Hunan University of Science and Technology, Xiangtan, 411201, China

2. State Key Laboratory of Coal Resources and Safe Mining, China University of Mining & Technology, Beijing, 100083, China

3. BGP, CNPC, Zhuozhou, 072751, China

4. School of Geosciences and Info-physics, Central South University, Changsha, 410083, China

5. Sinopec Geophysical Research Institute, Nanjing, 211103, China

6. WPI, School of Ocean and Earth Science, Tongji University, Shanghai, 200092, China

7. School of Science & Sport, University of the West of Scotland, Paisley PA1 2BE, UK

Abstract

Three-dimensional seismic survey is widely applied, but 3-D filtering technology has yet to be fully utilized for the analysis of seismic field data. The common approach is to first filter inline and then crossline. However, an effective 3-D filtering method is expected to eliminate coherent noise, such as the ground roll. We propose a 3-D Butterworth filtering method in the time-space domain. Firstly, a Butterworth-type filter in the frequency-wavenumber-domain is designed to suppress the linear noise with a specific apparent velocity. Secondly, transforming this filter to the time and space domain yields 3-D partial differential equations (PDEs), which are applied to suppress the linear noise. Factorizing the finite-difference equations in a different direction other than decreasing the 3-D PDEs to 2-D PDEs produces a highly accurate and efficient algorithm. Designing the 3-D Butterworth filter, selecting the filtering parameters, and showing its application to synthetic data and a 3-D high-density onshore seismic field data from a region in western China are discussed in detail. Numerical experiments with 3-D high-density onshore seismic field data demonstrate that it is more effective than the 3-D frequency-wavenumber-wavenumber (FKK) filtering method.

Publisher

Environmental and Engineering Geophysical Society

Subject

Geophysics,Geotechnical Engineering and Engineering Geology,Environmental Engineering

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