叠前时间偏移: 基于波动方程的架构、发展和应用


Autoria(s): 董春晖
Contribuinte(s)

张剑锋

Data(s)

06/06/2008

Resumo

This dissertation starts from the point that the prestack time migration can been considered as an approximation of the prestack depth migration, giving a wave equation based prestack time migration approach. The new approach includes: analytically getting the travel time and amplitude based on the one way wave equation and the stationary-phase theory, using ‘spread’ imaging method and imaging following the prestack depth migration, updating the velocity model with respect to the flats of the events in CRP gathers. Based on this approach, we present a scheme that can image land seismic data without field static correction. We may determine the correct near surface velocities and stack velocities by picking up the residual correction of the events in the CRP gathers. We may get the rational migration section based on the updated velocities and correct the migration section from a floating datum plane to a universal datum plane. We may adaptively determine the migration aperture according to the dips of the imaging structures. This not only speed up the processing, but may suppress the migration noise produce by the extra aperture. We adopt the deconvolution imaging condition of wave equation migration. It may partially compensate the geometric divergence. In this scheme, we use the table-driven technique which may enhance the computational efficiency. If the subsurface is much more complicated, it may be impossible to distinguish the DTS curve. To solve this problem, we proposed a technique to determine the appropriate range of the DTS curve. We synthesize DTS panel in this range using different velocities and depths, and stack the amplitude around the zero time. Determine the correct velocity and location of the considered grid point by comparing the values.

Identificador

http://159.226.119.211/handle/311031/1304

http://www.irgrid.ac.cn/handle/1471x/174288

Idioma(s)

中文

Fonte

叠前时间偏移: 基于波动方程的架构、发展和应用.董春晖[d].中国科学院地质与地球物理研究所,2008.20-25

Palavras-Chave #叠前时间偏移 #表驱动 #起伏地表 #偏移孔径 #共聚焦点速度估计
Tipo

学位论文