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Ground-roll attenuation using modified common-offset–common-reflection-surface stacking
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作者 Seyyed Ali Fa'al Rastegar Abdolrahim Javaherian +2 位作者 Naser Keshavarz Farajkhah Mehrdad Soleimani Monfared Abbas Zarei 《Applied Geophysics》 SCIE CSCD 2016年第2期353-363,419,420,共13页
We modified the common-offset-common-reflection-surface (COCRS) method to attenuate ground roll, the coherent noise typically generated by a low-velocity, low-frequency, and high-amplitude Rayleigh wave. The COCRS o... We modified the common-offset-common-reflection-surface (COCRS) method to attenuate ground roll, the coherent noise typically generated by a low-velocity, low-frequency, and high-amplitude Rayleigh wave. The COCRS operator is based on hyperbolas, thus it fits events with hyperbolic traveltimes such as reflection events in prestack data. Conversely, ground roll is linear in the common-midpoint (CMP) and common-shot gathers and can be distinguished and attenuated by the COCRS operator. Thus, we search for the dip and curvature of the reflections in the common-shot gathers prior to the common-offset section. Because it is desirable to minimize the damage to the reflection amplitudes, we only stack the multicoverage data in the ground-roll areas. Searching the CS gathers before the CO section is another modification of the conventional COCRS stacking. We tested the proposed method using synthetic and real data sets from western Iran. The results of the ground-roll attenuation with the proposed method were compared with results of the f-k filtering and conventional COCRS stacking after f-k filtering. The results show that the proposed method attenuates the aliased and nonaliased ground roll better than the f-k filtering and conventional CRS stacking. However, the computation time was higher than other common methods such as f-k filtering. 展开更多
关键词 Common-offset-common-reflection-surface (COCRS) CRS f-k filtering ground-roll attenuation
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阿尔及利亚某山地工区高效地震采集资料机械干扰压制技术研究
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作者 颜晓霞 蔡存军 瞿维迎 《石油物探》 CSCD 北大核心 2023年第S01期30-37,共8页
阿尔及利亚某山地工区高效地震采集资料中因存在机械干扰导致地震资料成像效果差、品质低,且常用的时域分频异常振幅衰减方法应用效果不理想。因此,提出了一种适合于压制机械干扰的综合去噪技术,在详细调查机械干扰波特征和分布规律的... 阿尔及利亚某山地工区高效地震采集资料中因存在机械干扰导致地震资料成像效果差、品质低,且常用的时域分频异常振幅衰减方法应用效果不理想。因此,提出了一种适合于压制机械干扰的综合去噪技术,在详细调查机械干扰波特征和分布规律的基础上,首先基于其与地滚波具有一定程度的相似性,采用自适应地滚波衰减方法去除部分机械干扰,并压缩其在空间方向的影响范围,使之局部性特征更加突出;然后采用f-x-y域异常振幅衰减方法进行去噪处理,使得表现为局部强振幅的机械干扰得到压制,特别是浅层的机械干扰;最后采用时域分频异常振幅衰减方法对中、深层资料进行剩余噪声压制处理。实际资料应用结果表明,以上综合去噪技术能够有效压制高效地震采集资料中的机械干扰,提高地震资料信噪比及成像效果,具有较强的实用性和较高的推广应用价值。 展开更多
关键词 机械干扰 自适应衰减 时域分频异常振幅衰减 f-x-y域异常振幅衰减
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