...
首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Improving lateral and vertical resolution of seismic images by correcting for wavelet stretch in common-angle migration
【24h】

Improving lateral and vertical resolution of seismic images by correcting for wavelet stretch in common-angle migration

机译:通过校正共角偏移中的小波拉伸来提高地震图像的横向和纵向分辨率

获取原文
获取原文并翻译 | 示例

摘要

Long-offset or high-incident-angle seismic reflections provide us with improved velocity resolution, better leverage against multiples, less contamination by ground roll, and information that is often critical when estimating lithology and fluid product. Unfortunately, high-incident-angle seismic reflections suffer not only from northyperbolic moveout but also from wavelet stretch during imaging, resulting in lower-resolution images that mix the response from adjacent lithologies. For an arbitrary acoustic medium, wavelet stretch from prestack migration depends only on the cosine of the reflection angle, such that the amount of wavelet stretch will be the same for all samples of a common-reflection-angle migrated trace. Thus, we are able to implement a wavelet stretch correction by applying a simple stationary spectral shaping operation to common-angle migrated traces. We obtain such traces directly by a prestack Kirchhoff migration algorithm. Correcting for stretch effectively increases the fold of imaged data, far beyond that achieved in conventional migration, resulting in improved signal-to-noise ratio of the final stacked section. Increasing the fidelity of large incident angles results in images with improved vertical and lateral resolution and with increased angular illumination, valuable for amplitude variation with angle (AVA) and amplitude variation with offset (AVO) analysis. Finally, such large-angle images are more sensitive to and therefore provide increased leverage over errors in velocity and velocity anisotropy. These ideas were applied to prestack time migration on seismic data from the Fort Worth basin, in Texas.
机译:大偏移量或高入射角地震反射为我们提供了更高的速度分辨率,更好的倍数杠杆作用,更少的地滚污染以及信息,这些信息在估算岩性和流体产品时通常至关重要。不幸的是,高入射角地震反射不仅受北双曲线移动的影响,而且在成像过程中还受到小波拉伸的影响,导致分辨率较低的图像混合了来自相邻岩性的响应。对于任意声介质,叠前偏移的小波拉伸仅取决于反射角的余弦,因此对于共反射角迁移的迹线的所有样本,小波拉伸的量将相同。因此,我们能够通过对普通角度迁移的迹线应用简单的静态频谱整形操作来实现小波拉伸校正。我们通过叠前Kirchhoff迁移算法直接获得此类跟踪。校正拉伸有效地增加了成像数据的倍数,远远超出了常规迁移所实现的倍数,从而提高了最终堆叠部分的信噪比。增大大入射角的保真度会导致图像具有改善的垂直和横向分辨率以及增加的角度照明,对于具有角度的振幅变化(AVA)和具有偏移的振幅变化(AVO)分析很有用。最后,这样的大角度图像对速度和速度各向异性的误差更敏感,因此可以提供更大的杠杆作用。这些想法被应用于德克萨斯州沃思堡盆地地震数据的叠前时间偏移。

著录项

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