Efficient Double-Beam Characterization for Fractured Reservoir
Name
Zheng-Fang-Fehler-Burns_Efficient double beam.pdf
Size
978.54 KB
Format
Adobe PDF
Checksum (MD5)
80a736d020e36d3c540fc024880824d6
Author(s) • • •
Zheng, Yingcai
Fang, Xinding
Fehler, Michael
Burns, Daniel R.
Date Issued
June 2012
Publisher
Massachusetts Institute of Technology. Earth Resources Laboratory
Series/Report no.
Earth Resources Laboratory Industry Consortia Annual Report;2012-07
Abstract
We proposed an efficient target-oriented method to characterize seismic properties of fractured reservoirs: the spacing between fractures and the fracture orientation. Based on the diffraction theory, the scattered wave vector is related to the incident wave vector computed from the source to the target using a background velocity model. Two Gaussian beams, a source beam constructed along the incident direction and a receiver beam along the scattered direction, interfere with each other. We then scan all possible fracture spacing and orientation and output an interference pattern as a function of the spacing and orientation the most likely fracture spacing and orientation can be inferred. Our method is adaptive for a variety of seismic acquisition geometries. If seismic sources (or receivers) are sparse spatially, we can shrink the source (or receiver) beam-width to zero and in this case, we achieve point-source-to-beam interference. We validated our algorithm using a synthetic dataset created by a finite difference scheme with the linear-slip boundary condition, which describes the wave-fracture interaction.
Subjects
Inversion
Fractures
Modeling
Persistent DSpace Link