海上地震资料零相位化处理技术研究

2012年 51卷 第No. 4-期
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Zero-phase processing and its application on marine seismic data
1.中国海洋石油总公司,北京100010;2.中海油田服务股份有限公司,天津塘沽300451
Wang Shoujun, China National Offshore Oilfield Company, Beijing 100010, China
在海洋地震资料采集中,气枪震源子波接近最小相位子波,反射信号的峰值点并不代表地下
反射界面,需要进行相位处理。传统的最小相位化处理技术不能彻底消除相位对资料的影响,传
统反褶积方法从地震资料中提取零相位化算子并对资料进行零相位化处理技术,由于提取算子的
不稳定性,很难得到满意的处理效果。为此,探讨了采用震源模拟子波、远场实测子波和海底提
取子波求取零相位化算子并对地震资料进行零相位化处理的技术。首先分析了非零相位处理对后
续高分辨率处理和解释标定的影响;然后讨论了海洋地震资料子波的获取方式,阐明了在深水、
浅水两种条件下如何利用不同子波进行零相位化算子求取和应用;最后以海洋资料处理为例,证
实了深、浅水资料零相位化处理技术的可靠性。
In marine seismic data acquisition, the wavelet of airgun source is close to minimum phase wavelet. As we
all know, the peak of the reflection isn’t represent the impedance interface, therefore, phase processing is
necessary. Conventional minimum phase processing technique cannot thoroughly remove the impact of
phase on the seismic data. Meanwhile, conventional deconvolution extracts zero-phasing operator and carry
out zero-phase processing on the data, and it is hard to obtain satisfactory processing results because of the
unstable operator. Therefore, the zero-phasing processing technique was studied based on the zero-phasing
operators derived from source simulated wavelet, far field measured wavelet and sea bottom extracted
wavelet to implement zero-phase processing. Firstly, the influence of non-zero-phase processing on
subsequent high-resolution processing and calibration was analyzed. Then, the methods of wavelet
extraction were discussed and elaborated how to use different wavelet in zero-phase operator extraction
and application in shallow water and deep water. The application results on shallow and deep water seismic
data verified that this method could get reliable zero-phase seismic data.
子波; 零相位; 算子; 褶积; 分辨率;
wavelet; zero phase; operator; convolution; resolution;
10.3969/j.issn.1000-1441.2012.04.014