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应用低频信号提高高速玄武岩屏蔽层下的成像质量
引用本文:佘德平,管路平,徐颖,李佩. 应用低频信号提高高速玄武岩屏蔽层下的成像质量[J]. 石油地球物理勘探, 2007, 42(5): 567-567
作者姓名:佘德平  管路平  徐颖  李佩
作者单位:河海大学土木工程学院,中国石化石油勘探开发研究院南京石油物探研究所,中国石化石油勘探开发研究院南京石油物探研究所,中国石化石油勘探开发研究院南京石油物探研究所 中国石化石油勘探开发研究院南京石油物探研究所,江苏省南京市卫岗21号,210014
摘    要: 针对江陵凹陷陵北玄武岩高速屏蔽层下深层成像困难的实际问题,本文首先分析了玄武岩地层的特点及其对波场传播规律的影响,设计了两个相应的理论模型;采用波动方程波场数值模拟技术,通过对深层反射地震信号特征的分析,表明低频地震信号既具有较强的穿透薄高速玄武岩屏蔽层的能力,也具有减弱粗糙表面产生的绕射噪声的能力。将此思路应用于实际资料处理,结果表明利用低频信号可以明显削弱玄武岩高速屏蔽层的影响,提高屏蔽层下深层成像的质量。

关 键 词:成像质量  屏蔽层  低频信号  穿透力  数值模拟  玄武岩
修稿时间:2006-11-01

Applying of low-frequency signal to improve imaging quality below shielding high-velocity basalt
She De-ping,Nanjing Institute of Geophysical Pros-pecting for Petroleum,SINOPEC,Nanjing City,Jiangsu Province,,China,Guan Lu-ping,Xu Ying and Li Pei. Applying of low-frequency signal to improve imaging quality below shielding high-velocity basalt[J]. Oil Geophysical Prospecting, 2007, 42(5): 567-567
Authors:She De-ping  Nanjing Institute of Geophysical Pros-pecting for Petroleum  SINOPEC  Nanjing City  Jiangsu Province    China  Guan Lu-ping  Xu Ying  Li Pei
Affiliation:She De-ping,Nanjing Institute of Geophysical Pros-pecting for Petroleum,SINOPEC,Nanjing City,Jiangsu Province,210014,China,Guan Lu-ping,Xu Ying and Li Pei
Abstract:In accordance with the practical issue that the imaging below the shielding high-velocity basalt in Lingbei area of Jiangling sag is difficult, the paper first analyzed the characters of basalt and influence on the rule of wavefield propagation and designed two corresponding theoretical models; using wave-equation wavefield numeric simulation technique and analyzing the characters of deep reflection seismic signal showed the low-frequency signals are characterized by having the strong capacity both penetrating thin shielding high-velocity basalt and reducing diffraction noises produced from rough surface. Application of the idea to practical data processing showed that using low-frequency signals can greatly reduce the influence of shielding high-velocity basalt, improving the imaging quality of deep beds below the shielding layer.
Keywords:imaging quality   shielding layer   low-frequency signal   penetrating capacity   numeric simulation   basalt
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