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基于对比折射法的三维静校正技术及其应用
引用本文:宁俊瑞,王顺国,樊佳芳,贾建仓,徐国栋. 基于对比折射法的三维静校正技术及其应用[J]. 石油物探, 2006, 45(3): 277-284
作者姓名:宁俊瑞  王顺国  樊佳芳  贾建仓  徐国栋
作者单位:1. 中国科学院地质与地球物理研究所,北京,100029;中国石油化工股份有限公司石油勘探开发研究院,北京,100083
2. 天津精采软件技术有限公司,天津,300457
3. 中国石油化工股份有限公司石油勘探开发研究院,北京,100083
摘    要:在地形起伏剧烈、速度和厚度横向变化大的地区,折射静校正技术的应用受到诸多限制,主要表现在不能准确地识别和拾取来自于地下连续地质界面的折射波,使得精确求取的长波长静校正量困难。为此,提出了一种基于对比折射法的三维静校正技术。介绍了这种静校正技术的方法原理和特点,基于对比折射法的折射波至拾取实质上是一个折射层的对比分析解释过程,因此能准确地拾取折射波至,精确地求解低速带的绝对延迟时;然后利用延迟时和近地表速度模型(等效,时深,空变)反演表层模型,最终一次性完成基准面静校正(包含低速带校正和高程校正)。在黄土塬、沙漠以及沙漠和山地的接合部等地区,利用基于对比折射法的三维静校正技术进行静校正处理,使资料的品质得到了明显改善,反射同相轴连续性好,信噪比和分辨率高,构造形态清晰可靠,提高了勘探精度。

关 键 词:复杂地表区  对比折射法  自动拾取  延迟时  静校正
文章编号:1000-1441(2006)03-0277-08
收稿时间:2005-06-22
修稿时间:2005-06-222005-11-29

Application of 3-D static correction technology based on correlation refractionmethod.
Ning Junrui,Wang Shunguo,Fan Jiafang,Jia Jiancang,Xu Guodong. Application of 3-D static correction technology based on correlation refractionmethod.[J]. Geophysical Prospecting For Petroleum, 2006, 45(3): 277-284
Authors:Ning Junrui  Wang Shunguo  Fan Jiafang  Jia Jiancang  Xu Guodong
Affiliation:China academy of sciences geology and geophysical institute, Beijing 100029 China
Abstract:Since it is unreliable to identify and pick refraction wave from underground continuous layers in those areas with drastic variation of topography as well as lateral variation of velocity and thickness, refraction static correction technology is limited in calculating static correction value of long wavelength with high precision. A 3-D static correction technology based on Correlation Refraction Method is proposed to pick first break and calculate absolute delay time precisely, eventually refraction static correction is performed by delay time and near-surface model. Result from real data processing shows that this approach can substantially improve the quality of seismic stack sections in areas with complex near surface conditions such as loess table land, desert and the commissure between desert and mountainous region.
Keywords:complex surface  correlation refraction method  auto-picking  delay time  static
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