...
首页> 外文期刊>Geophysical Prospecting >Pre-stack Kirchhoff depth migration local space-shift imaging condition: synthetic and data examples
【24h】

Pre-stack Kirchhoff depth migration local space-shift imaging condition: synthetic and data examples

机译:堆栈前Kirchhoff深度迁移本地空间移位成像条件:合成和数据示例

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Extracting accurate common image angle gathers from pre-stack depth migrations is important in the generation of any incremental uplift to the amplitude versus angle attributes and seismic inversions that can lead to significant impacts in exploration and development success. The commonly used Kirchhoff migration outputs surface common offset image gathers that require a transformation to angle gathers for amplitude versus angle analysis. The accuracy of this transformation is one of the factors that determine the robustness of the amplitude versus angle measurements. Here, we investigate the possibility of implementing an extended imaging condition, focusing on the space-lag condition, for generating subsurface reflection angle gathers within a Kirchhoff migration. The objective is to determine if exploiting the spatial local shift imaging condition can provide any increase in angle gather fidelity relative to the common offset image gathers. The same restrictions with a ray-based approach will apply using the extended imaging condition as both the offset and extended imaging condition method use travel times derived from solutions to an Eikonal equation. The aims are to offer an alternative ray-based method to generate subsurface angle gathers and to understand the impact on the amplitude versus angle response. To this end, the implementation of the space-shift imaging condition is discussed and results of three different data sets are presented. A layered three-dimensional model and a complex two-dimensional model are used to assess the space shift image gathers output from such a migration scheme and to evaluate the seismic attributes relative to the traditional surface offset common image gathers. The synthetic results show that the extended imaging condition clearly provides an uplift in the measured amplitude versus angle over the surface offset migration. The noise profile post-migration is also improved for the space-lag migration due to the double summation inside the migration. Finally, we show an example of a space-lag gather from deep marine data and compare the resultant angle gathers with those generated from an offset migration and a time-shift imaging condition Kirchhoff migration. The comparison of the real data with a well log shows that the space-lag result is a better match to the well compared to the time-lag extended imaging condition and the common offset Kirchhoff migration. Overall, the results from the synthetics and real data show that a Kirchhoff migration with an extended imaging condition is capable of generating subsurface angle gathers with an incremental improvement in amplitude versus angle fidelity and lower noise but comes at a higher computational cost.
机译:提取精确的常见图像角度从堆叠前深度迁移的聚集在产生任何增量隆起到振幅与角度属性和地震反转的产生中很重要,这可能导致勘探和发展成功的显着影响。常用的kirchhoff迁移输出表面公共偏移图像收集,需要转换为幅度与角度分析的角度集。该转换的准确性是确定振幅与角度测量的稳健性的因素之一。这里,我们调查实现扩展成像条件的可能性,专注于空间滞后条件,用于在Kirchhoff迁移内产生地下反射角度集。目的是确定是否利用空间局部移位成像条件,可以提供相对于常见偏移图像收集的角度收集保真度的任何增加。使用基于射线的方法的相同限制将使用扩展的成像条件应用,因为偏移和扩展成像条件方法使用从解决方案中导出的行程时间。目的是提供一种基于替代的射线方法,以产生地下角度集,并理解对振幅与角度响应的影响。为此,讨论了空间移位成像条件的实现,并呈现了三种不同数据集的结果。分层三维模型和复杂的二维模型用于评估从这种迁移方案输出的空间移位图像收集,并评估相对于传统的表面偏移常见图像收集的地震属性。合成结果表明,扩展的成像条件在表面偏移迁移上显然在测量的幅度与角度下隆起。由于迁移内部的双重求和,对空间滞后迁移还改善了噪声剖面。最后,我们展示了从深海数据收集的空间滞后的示例,并将结果分角集比与从偏移迁移生成的结果和时移成像条件kirchhoff迁移的角度进行比较。与井日志的真实数据的比较表明,与时间滞后扩展成像条件和共同的偏移kirchhoff迁移相比,空间滞后结果与井相比更好。总的来说,来自综合和实际数据的结果表明,具有扩展成像条件的Kirchhoff迁移能够产生幅度与角度保真度的增量改善和较低的噪声的增量改善,但是以更高的计算成本,但是以较高的计算成本来产生地下角度集。

著录项

  • 来源
    《Geophysical Prospecting》 |2019年第5期|1184-1200|共17页
  • 作者单位

    Tullow Oil Ltd Appl Geophys Cent Pk 1 Dublin 18 Ireland;

    Tullow Oil Ltd Appl Geophys Cent Pk 1 Dublin 18 Ireland;

    Tullow Oil Ltd Appl Geophys Cent Pk 1 Dublin 18 Ireland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Imaging; Seismics; Theory;

    机译:成像;地震;理论;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号