›› 2016, Vol. 37 ›› Issue (1): 1-1.doi: 10.7657/XJPG20160122

• 论文 •    

高分辨率地震资料处理技术综述

曹思远,袁 殿   

  1. (中国石油大学 CNPC物探重点实验室,北京 102249)
  • 出版日期:2019-01-01 发布日期:1905-07-12

A Review of HighResolution Seismic Data Processing Approaches

CAO Siyuan, YUAN Dian   

  1. (CNPC Key Laboratory of Geophysical Prospecting, China University of Petroleum, Beijing 102249, China)
  • Online:2019-01-01 Published:1905-07-12

摘要: 地震资料的分辨率是制约勘探精度的重要因素,高分辨率地震资料处理的目的是合理恢复地震记录的高频和低频信息,有效拓宽频宽,常用的技术有3类:反褶积技术以褶积模型为基础,对地震子波、反射系数、地层介质产状和激发接收方式等进行各种假设;吸收补偿技术以吸收衰减模型为基础,对大地滤波引起的振幅衰减和相位畸变进行补偿和校正,补偿效果较依赖于Q值精度和资料与模型的匹配度;基于时频谱的频率恢复技术,关键在于对非稳态地震子波的振幅和相位进行合理的估计。高分辨率地震资料处理技术的本质是拓宽频宽,对地震剖面有2方面影响:多数同相轴变细、增多,子波长度压缩;部分同相轴能量变弱甚至消失,子波旁瓣压缩。相对于高频信息,低频信息对增强剖面层次感、提高反演精度的作用更重要,恢复难度也更大,在今后的高分辨率地震资料处理中,应更注重低频信息的保护和恢复。

Abstract: Resolution of seismic data is an important factor of constraining seismic prospecting precision, while high?resolution seismic data processing aims to properly recover high and low frequency spectrum information from seismic records and effectively broaden the bandwidth or frequency spectrum. The conventional approaches to get them are applied as follows: Deconvolution approach is based on seismic convolution model, which requires various assumptions of seismic wavelet, reflection coefficient, stratigraphic occurrence and excitation?receiving pattern; inverse Q filtering approach supported by mechanism of seismic attenuation can compensate and correct amplitude attenuation and phase distortion caused by earth filtering, which depends on the precision of Q estimation and the match degree between model and actual data; frequency recovery approach based on time?frequency spectrum allows to rational estimation of unsteady state wavelet’s amplitude and phase. All in all, these approaches aim to broaden the bandwidth in nature, thus resulting in two changes in seismic profile during high?resolution processing: one is most events become thinner and incremental (due to shorter wavelength); the other is some events become weaker or even disappear (due to smaller side lobes of wavelet). Compared to high frequency component, low frequency component has greater effect on enhancing seismic profile’s layering and improving inverse accuracy, and its recovery is much more difficult. Hence the low frequency component information should be paid more attention to in protection and recovery during such a processing in the future

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